CN106590634A - Preparation of doped zinc sulfide with micro-nano composite structure and application thereof in augmented reality - Google Patents

Preparation of doped zinc sulfide with micro-nano composite structure and application thereof in augmented reality Download PDF

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Publication number
CN106590634A
CN106590634A CN201611079268.4A CN201611079268A CN106590634A CN 106590634 A CN106590634 A CN 106590634A CN 201611079268 A CN201611079268 A CN 201611079268A CN 106590634 A CN106590634 A CN 106590634A
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doped zinc
micro
nano
zinc sulphide
augmented reality
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钱鑫
周雪
李风煜
宋延林
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Beijing Kezhuo Research Technology Co Ltd
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Beijing Kezhuo Research Technology Co Ltd
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    • CCHEMISTRY; METALLURGY
    • C09DYES; PAINTS; POLISHES; NATURAL RESINS; ADHESIVES; COMPOSITIONS NOT OTHERWISE PROVIDED FOR; APPLICATIONS OF MATERIALS NOT OTHERWISE PROVIDED FOR
    • C09KMATERIALS FOR MISCELLANEOUS APPLICATIONS, NOT PROVIDED FOR ELSEWHERE
    • C09K11/00Luminescent, e.g. electroluminescent, chemiluminescent materials
    • C09K11/08Luminescent, e.g. electroluminescent, chemiluminescent materials containing inorganic luminescent materials
    • C09K11/56Luminescent, e.g. electroluminescent, chemiluminescent materials containing inorganic luminescent materials containing sulfur
    • C09K11/562Chalcogenides
    • C09K11/565Chalcogenides with zinc cadmium
    • CCHEMISTRY; METALLURGY
    • C01INORGANIC CHEMISTRY
    • C01GCOMPOUNDS CONTAINING METALS NOT COVERED BY SUBCLASSES C01D OR C01F
    • C01G9/00Compounds of zinc
    • C01G9/08Sulfides
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/011Arrangements for interaction with the human body, e.g. for user immersion in virtual reality
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/017Gesture based interaction, e.g. based on a set of recognized hand gestures
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06VIMAGE OR VIDEO RECOGNITION OR UNDERSTANDING
    • G06V40/00Recognition of biometric, human-related or animal-related patterns in image or video data
    • G06V40/20Movements or behaviour, e.g. gesture recognition
    • G06V40/28Recognition of hand or arm movements, e.g. recognition of deaf sign language
    • CCHEMISTRY; METALLURGY
    • C01INORGANIC CHEMISTRY
    • C01PINDEXING SCHEME RELATING TO STRUCTURAL AND PHYSICAL ASPECTS OF SOLID INORGANIC COMPOUNDS
    • C01P2004/00Particle morphology
    • C01P2004/01Particle morphology depicted by an image
    • C01P2004/03Particle morphology depicted by an image obtained by SEM
    • CCHEMISTRY; METALLURGY
    • C01INORGANIC CHEMISTRY
    • C01PINDEXING SCHEME RELATING TO STRUCTURAL AND PHYSICAL ASPECTS OF SOLID INORGANIC COMPOUNDS
    • C01P2004/00Particle morphology
    • C01P2004/60Particles characterised by their size
    • C01P2004/61Micrometer sized, i.e. from 1-100 micrometer
    • CCHEMISTRY; METALLURGY
    • C01INORGANIC CHEMISTRY
    • C01PINDEXING SCHEME RELATING TO STRUCTURAL AND PHYSICAL ASPECTS OF SOLID INORGANIC COMPOUNDS
    • C01P2004/00Particle morphology
    • C01P2004/60Particles characterised by their size
    • C01P2004/64Nanometer sized, i.e. from 1-100 nanometer

Abstract

The invention relates to the field of augmented reality, and discloses preparation of doped zinc sulfide with a micro-nano composite structure and application thereof in augmented reality. Specifically, the invention discloses a doped zinc sulfide material with a micro-nano composite structure prepared by a crushing technology, and realizes application thereof in augmented reality. Because the micro-nano composite structure enhances the friction of the doped zinc sulfide, the mechanoluminescence of the doped zinc sulfide is greatly enhanced, and as for an ultrasensitive sensor, the detection limit is 5Pa when calculated according to pressure intensity, and the detection limit is 1muJ when calculated according to energy. When the doped zinc sulfide is encapsulated and stuck to each part of a human body, micromotions of the human body can be converted into varicolored optical signals in real time, so the reality is augmented in the angle of material, and the response time is 10ms. Because dynamic force is converted into visible light, the augmented realization brings a new mode of expression for the body actions and body micromotions of a human. When the human is emotionally excited, the actions are faster, and the light intensity is stronger; and when the human is smooth in mood, the actions are slower, and the light intensity is weaker.

Description

The doped zinc sulphide of micro-nano compound structure is prepared and its application on augmented reality
Technical field
The present invention relates to augmented reality field, in particular it relates to obtain micro-nano using ultrasonication and wet method blending technology The doped zinc sulphide material of composite construction, and realize its application in augmented reality.
Background technology
Augmented reality is an important directions of emulation technology.It passes through computer technology, by virtual Information application to very The real world, real environment and virtual object have been added to same picture or space in real time while existing.Augmented reality Technology contain multimedia, three-dimensional modeling, real-time video show and control, Multi-sensor Fusion, real-time tracking and registration, scene New technique and the new tools such as fusion.Augmented reality is provided in general, different from the appreciable information of the mankind.Increasing Strong field of reality, is concentrated mainly on the research to picture perception at present, and it is by good passive of program setting that experiencer obtains How the augmented reality experience of formula, prepare new material carrier, realizes the accurate perception to power optics output, widens enhancing existing Real range of application, it is an important developing direction to produce a kind of brand-new active augmented reality experience.It is existing with strengthening Real game and the development of sector application, put forward higher requirement to new principle new technology new material, realize dimensional micro mechanical signal Many perception and multi output be still a major challenge.
Augmented reality is to develop very fast field in recent years.In order to reach the purpose of augmented reality, originally existing The entity information (visual information, sound, taste, tactile etc.) experienced is difficult in the certain hour spatial dimension in the real world, is led to Triggering corresponding event is crossed, the real world that is added to after scientific and technical analog simulation again is perceived by human sensory, super so as to reach More real sensory experience.Such as technical scheme disclosed in Chinese Patent Application No. CN201510213943.7 proposes one kind The gesture identification method and augmented reality glasses system of augmented reality glasses.Obtaining depth camera first is strengthened by captured in real-time Scene in front of Reality glasses and the depth image that obtains, and the depth value and depth map of finger tip are calculated based on depth image The two-dimensional coordinate of finger tip as in;Secondly the two-dimensional coordinate of finger tip in depth image is changed using transition matrix, and according to The two-dimensional coordinate being converted to, generates a virtual target in the display interface of augmented reality glasses;Last analysis in real time refers to Point depth value size variation situation, and in display interface virtual target change in location situation, to trigger corresponding event. The method is aligned with the fingertip location under human eye visual angle by the fingertip location for positioning augmented reality glasses, realizes accurately knowing The purpose of other user gesture.
But above-mentioned technology is because program is simulated emulation, is pre-set passive type augmented reality, The development and change of outside are adapted at any time can not.
The content of the invention
The invention aims to widen the scope of augmented reality, the angle with performance is prepared from material structure, there is provided A kind of high sensitivity, to the new opplication direction with multi output is perceived human body dimensional micro mechanical signal more.
To achieve these goals, in a first aspect, the invention provides micro-nano compound structure can strengthen doped zinc sulphide The new discovery of mechanoluminescence susceptiveness.
Preferably, a diameter of 5-200nm of the nano-particle.
Preferably, a diameter of 2-50 μm of the micron doped zinc sulphide granule.
Preferably, the micro-nano particle diameter ratio is 20, when mol ratio is 1: 200, the mechanoluminescence spirit of doped zinc sulphide Quick property is most strong.
Preferably, the nano-particle selected from silicon dioxide, doped zinc sulphide, zinc sulfide, Graphene, graphite alkene, white carbon black, In titanium dioxide, diamond, aluminium oxide, gold, silver, copper, zirconium dioxide, nickel oxide, Zinc Oxide, Calcium Carbonate and CNT one Plant or various.
Second aspect, the invention provides the doped zinc sulphide preparation method of micro-nano compound structure, wherein, it is broken including ultrasound Broken method and wet method blending method.
Preferably, transition metal element doped zinc sulfide powder is scattered in ethanol, at room temperature ultrasonication 72- 96 hours, ultrasonic power was 1600-2000W, obtained micro-nano particle diameter ratio for 20-30, doped zinc sulphide powder and ethanol Mass ratio is 1: 10, is often worked the 2-3 seconds during ultrasonication, the rest 1-2 seconds, it is to avoid system is overheated.
Preferably, it is better than 100nm doped zinc sulphide particle effects using 100nm silica nanosphere effects to be better than 100nm polystyrene spheres.
Preferably, by 100nm silica nanospheres and 2 μm of doped zinc sulphide micron particle according to 200: 1 points of mol ratio Dissipate in ethanol, 48-72 hours are stirred at 60 DEG C, is dried at 25-60 DEG C.The silica nanosphere uniform adsorption for obtaining is being mixed On miscellaneous Zinc sulphide micron granule, micro-nano compound structure is formed.
The third aspect, the invention provides it is a kind of by high-sensitive mechanoluminescence materials application to the new of augmented reality field Thinking.
Preferably, the realization rate of augmented reality is that the doped zinc sulphide of micro-nano compound structure is affixed on human body each muscle The position such as group, heart and pulse, when a certain action is completed, respective muscle position can be luminous, by collect data with Analysis, can obtain the health status such as emotion, strength and the pulse beat of people, realize many perception, and the form table by light Reveal and, realize multi output.
Preferably, the light of the augmented reality is visible ray, and wave-length coverage can cover visible light wave range, with orange light, green Light, blue light and white light are most commonly seen.
By above-mentioned technical proposal, strengthen the friction of doped zinc sulphide using micro-nano compound structure, so as to greatly strengthen The mechanoluminescence susceptiveness of doped zinc sulphide, is applied to augmented reality field.Super-sensitive self-luminescent material causes the present invention Have compared to traditional monitor and the wider array of range of application of sensor and outstanding performance, have in augmented reality great Using value.More excellent, there is to small dynamic force prepared sensor hypersensitive, high-precision real-time optical to ring Should, calculating according to pressure, in 5Pa, according to energy balane, test limit can perceive the heart in the hypersensor of 1 μ J to test limit The dimensional micro mechanical signals such as pulse are jumped, high accuracy response is realized, response time is 10ms, it is achieved thereby that real-time response.Due to Which is that dynamic force is converted into visible ray, thus it is this strengthen realize being the limb action that gives people and body fine motion bring it is new Expression way.People it is excited when, action is very fast, and light intensity is stronger;When the emotion of people is steady, action is slower, and light intensity is weaker.
Other features and advantages of the present invention will be described in detail in subsequent specific embodiment part.
Description of the drawings
Accompanying drawing is, for providing a further understanding of the present invention, and to constitute the part of description, with following tool Body embodiment is used for explaining the present invention together, but is not construed as limiting the invention.In the accompanying drawings:
Fig. 1 be the present invention prepare the schematic diagram of doped zinc sulphide of micro-nano compound structure, scanning electron microscope diagram piece, The XRD figure of data and curves and doped zinc sulphide between transmitting light intensity and input kinetic energy;Micro-nano compound structure is schematically illustrate a selected in a Frictional property can be strengthened, so as to the susceptiveness significantly there is provided mechanoluminescence, the scanning electron microscope of doped zinc sulphide in b Figure, about 2 μm of microns Particle size in figure, nanoparticle size is about 100nm, and a micron doped zinc sulphide, micro-nano are illustrated in c Response performance of the doped zinc sulphide and mixed nanometer zinc sulfide of composite construction to power.
Fig. 2 is the mechanoluminescence performance map of variety classes nano-particle of the present invention and micron doped zinc sulphide composite construction.
Fig. 3 is the datagram that the present invention is applied to augmented reality.The doped zinc sulphide of micro-nano compound structure is affixed on into handss in a 14 joints for referring to, by taking hand motion as an example, illustrate the augmented reality application to gesture, are principal component analysiss in b (PCA), in c it is hierarchical cluster analysis (HCA).
Specific embodiment
Hereinafter the specific embodiment of the present invention is described in detail.It should be appreciated that described herein concrete Embodiment is merely to illustrate and explains the present invention, is not limited to the present invention.
Herein the end points and any value of disclosed scope is not limited to the accurate scope or value, these scopes or Value should be understood to comprising the value for being close to these scopes or value.For numerical range, between the endpoint value of each scope, respectively Between the endpoint value of individual scope and single point value, and individually one or more can be obtained with combination with one another between point value New numerical range, these numerical rangies should be considered concrete open herein.
The present inventor has found in the course of the study, by nanometer is introduced in the doped zinc sulphide to micron Grain, can play enhancing friction, so as to substantially increase the mechanoluminescence performance of doped zinc sulphide.Its susceptiveness is according to pressure gage Calculate, in 5Pa, according to energy balane, test limit improves a number than the susceptiveness of micron doped zinc sulphide in 1 μ J to test limit More than magnitude, the dimensional micro mechanical signals such as pulse beat can be perceived, realize high accuracy response, response time is 10ms, so as to Realize real-time response.The doped zinc sulphide of micro-nano compound structure can be prepared by ultrasonication, it is also possible to be blended by wet method Arrive.By material attachment in the positions such as human body each muscle group, heart and pulse, when a certain action is completed, respective muscle Position can be luminous, by collecting data and analysis, can obtain the health status such as emotion, strength and the pulse beat of people, real It is now to perceive more, and showed by the form of light, realize multi output.As which is that dynamic force is converted into visible ray, institute To give augmented reality new definition.The augmented reality experience of the passive type good by program setting different from the past, what which gave people Limb action and body fine motion bring new expression way, are a kind of brand-new active augmented reality applications.
Based on this, in a first aspect, the invention provides micro-nano compound structure can strengthen the spirit of doped zinc sulphide mechanoluminescence The new discovery of quick property.
Term " micro-nano be combined " refers to that nano-particle (piece, ellipse, taper and irregularly shaped) uniform adsorption is mixed in micron The composite construction formed by miscellaneous sulfuration zinc surface.Doped zinc sulphide be a kind of mechanoluminescence material, by dynamic pressure when meeting Launch light, and light intensity with suffered pressure into positive correlation.
Preferably, the nano-particle selected from silicon dioxide, doped zinc sulphide, zinc sulfide, Graphene, graphite alkene, white carbon black, In titanium dioxide, diamond, aluminium oxide, gold, silver, copper, zirconium dioxide, nickel oxide, Zinc Oxide, Calcium Carbonate and CNT one Plant or various.
According to the present invention, in theory, as long as the material of nanoscale can as the adsorbate of micron doped zinc sulphide, But it was found by the inventors of the present invention that the diameter of nano material performance of final prepared material in 5-200nm can be obtained Further lifted.It is more highly preferred to, the micro-nano particle diameter ratio is 20, and mol ratio is 1: 200.
Second aspect, the invention provides the doped zinc sulphide preparation method of micro-nano compound structure, wherein, it is broken including ultrasound Broken method and wet method blending method.
According to the present invention, there is no particular limitation for described two methods, as long as can be by nano-particle uniform adsorption in micro- On rice doped zinc sulphide.Sonioation method is scattered in transition metal element doped zinc sulfide powder in ethanol, in room The lower ultrasonication 72-96 hours of temperature, ultrasonic power is 1600-2000W, obtains micro-nano particle diameter ratio for 20-30, doping sulfuration Zinc powder is 1: 10 with the mass ratio of ethanol, is often worked the 2-3 seconds during ultrasonication, the rest 1-2 seconds.Wet method blending method is by 100nm Silica nanosphere and 2 μm of doped zinc sulphide micron particle are scattered in ethanol according to mol ratio 200: 1, are stirred at 60 DEG C 48-72 hours, are dried at 25-60 DEG C.The silica nanosphere uniform adsorption for obtaining on doped zinc sulphide micron particle, shape Into micro-nano compound structure.Under preferable case, wet method blending method more cheap and simple.
According to the present invention, be not particularly limited in the species of the nano-particle, if can uniform adsorption in micro- The reinforced effects of mechanoluminescence can be produced on rice doped zinc sulphide.Preferably, the nano-particle is selected from silicon dioxide, doping Zinc sulfide, zinc sulfide, Graphene, graphite alkene, white carbon black, titanium dioxide, diamond, aluminium oxide, gold, silver, copper, zirconium dioxide, oxygen Change one or more in nickel, Zinc Oxide, Calcium Carbonate and CNT.But in situations where it is preferred, in order to further improve institute State sensitivity and the precision of material, the Mohs' hardness of the nano-particle is the bigger the better, more preferably diamond, two One or more of silicon oxide and aluminium oxide, it is considered to cost factor, more preferably silicon dioxide.
The third aspect, present invention also offers it is a kind of by high-sensitive mechanoluminescence materials application to augmented reality field New approaches.
Although it was found by the inventors of the present invention that the augmented reality at single position is extremely important, working as each muscle group, heart Observed with the position such as pulse simultaneously, i.e., it is when perceiving with multi output more, with more realistic meaning, when a certain action is completed, Respective muscle position can be luminous, by collecting data and analysis, can obtain the health such as emotion, strength and the pulse beat of people Situation, and showed by the form of visible ray.
It was found by the inventors of the present invention that the light of the augmented reality is visible ray, wave-length coverage can cover visible light wave Section, it is in practice, the most commonly used with orange light, green glow, blue light and white light.
During by the materials application of the present invention in human body augmented reality, the doped zinc sulphide pair of described micro-nano compound structure Small dynamic force can show the excellent specific property of hypersensitive, high accuracy and real-time optical response, and its susceptiveness is calculated according to pressure, In 5Pa, according to energy balane, test limit improves an order of magnitude than the susceptiveness of micron doped zinc sulphide in 1 μ J to test limit More than, the dimensional micro mechanical signals such as pulse beat can be perceived, high accuracy response is realized, response time is 10ms, so as to realize Real-time response.
Hereinafter will be described the present invention by embodiment.
Embodiment 1
The present embodiment is used for the preparation method of the doped zinc sulphide for illustrating micro-nano compound structure of the present invention and in augmented reality On application
(1) preparation of the doped zinc sulphide of micro-nano compound structure
By zinc sulfide (ZnS: Mn) granule (commercially available product of the Shanghai Ke Yan photoelectricity technology corporation, Ltd.s) stirring point of additive Mn Dissipate in ethanol (granule is 1: 10 with ethanol mass ratio), magnetic agitation 2 hours, (new sesame is biological in Ningbo to be placed in cell crushing instrument Commercially available product of Science and Technology Co., Ltd.'s trade mark for JY92-IIN) in ultrasonication 72 hours at room temperature, ultrasonic power is 2000, often work during ultrasonication 2 seconds, rest 1 second.Drying is stirred under room temperature, the sulfur of the additive Mn of micro-nano compound structure is obtained Change zinc (ZnS: Mn) granule, shown in scanning electron microscope (Hitachi JSM-7500F) picture of the granule and picture as Fig. 1 b in kind, this In the mechanoluminescence performance curve as Fig. 1 c of grain shown in Nano/microparticles.
(2) application of the doped zinc sulphide of micro-nano compound structure on augmented reality
ZnS: Mn granule of the micro-nano compound structure that step (1) is obtained and silicone rubber (the limited public affairs of Beijing sea cowry Cisco skill Department's commercially available product) mix for 7: 3 ratio according to mass ratio, stir 10 minutes, taking 10g mixture makes which in square culture dish (130mm*130mm) natural levelling in, 80 DEG C solidify 30 minutes, obtain uniform thin film, are divided into the square of 10mm*10mm Decile.14 joints of finger are affixed on, when people makes gesture, the position of correspondence activity can send orange light.Pass through Data and analysis are collected, the sign language of people can be read in the form of light, realized perceiving more, and visible ray can also be read Person directly reads, and realizes the multi output of information, shown in many perception enhanced to reality and multi-output data as Fig. 3 b, 3c.
Embodiment 2
The present embodiment is used for the preparation method of the doped zinc sulphide for illustrating micro-nano compound structure of the present invention and in augmented reality On application
(1) preparation of the doped zinc sulphide of micro-nano compound structure
By zinc sulfide (ZnS: Mn) granule (commercially available product of the Shanghai Ke Yan photoelectricity technology corporation, Ltd.s) stirring point of additive Mn Dissipate in ethanol (granule with ethanol mass ratio be 1: 10), magnetic agitation 2 hours, add 200 times of additive Mns zinc sulfide (ZnS: Mn) silica nanosphere (Aladdin commercially available product) of the 100nm of granule mol ratio, stirs drying under room temperature, obtains micro-nano multiple Zinc sulfide (ZnS: the Mn) granule of the additive Mn of structure is closed, the mechanoluminescence performance of granule obtained by this kind of method is shown in Fig. 2.
(2) application of the doped zinc sulphide of micro-nano compound structure on augmented reality
ZnS: Mn granule of the micro-nano compound structure that step (1) is obtained and silicone rubber (the limited public affairs of Beijing sea cowry Cisco skill Department's commercially available product) mix for 7: 3 ratio according to mass ratio, stir 10 minutes, taking 10g mixture makes which in square culture dish (130mm*130mm) natural levelling in, 80 DEG C solidify 30 minutes, obtain uniform thin film, are divided into the square of 10mm*10mm Decile.The muscle group of face is affixed on, when people makes expression, the position of correspondence activity can send orange light.By collecting number According to analysis, can read the expression language of people in the form of light, realize perceive, and visible ray can also be direct by reader Read, realize the multi output of information.
Embodiment 3
The present embodiment is used for the preparation method of the doped zinc sulphide for illustrating micro-nano compound structure of the present invention and in augmented reality On application
(1) preparation of the doped zinc sulphide of micro-nano compound structure
By zinc sulfide (ZnS: Cu) granule (commercially available product of the Shanghai Ke Yan photoelectricity technology corporation, Ltd.s) stirring point of Copper-cladding Aluminum Bar Dissipate in ethanol (granule with ethanol mass ratio be 1: 10), magnetic agitation 2 hours, add 200 times of Copper-cladding Aluminum Bars zinc sulfide (ZnS: Cu) silica nanosphere (Aladdin commercially available product) of the 200nm of granule mol ratio, stirs drying under room temperature, obtains micro-nano multiple Zinc sulfide (ZnS: the Cu) granule of the Copper-cladding Aluminum Bar of structure is closed, the mechanoluminescence performance of granule obtained by this kind of method is shown in Fig. 2.
(2) application of the doped zinc sulphide of micro-nano compound structure on augmented reality
ZnS: Cu granule of the micro-nano compound structure that step (1) is obtained and silicone rubber (the limited public affairs of Beijing sea cowry Cisco skill Department's commercially available product) mix for 7: 3 ratio according to mass ratio, stir 10 minutes, taking 10g mixture makes which in square culture dish (130mm*130mm) natural levelling in, 80 DEG C solidify 30 minutes, obtain uniform thin film, are divided into the square of 10mm*10mm Decile.The muscle group of wrist is affixed on, when people's beat pulse, the position of correspondence activity can send the light of green.By collecting number According to analysis, can read the pulse of people in the form of light, realize perceive, and visible ray can also directly be read by reader Go out, realize the multi output of information.
Embodiment 4
The present embodiment is used for the preparation method of the doped zinc sulphide for illustrating micro-nano compound structure of the present invention and in augmented reality On application
Method according to embodiment 1 prepares the doped zinc sulphide of micro-nano compound structure, and except for the difference that, the doped chemical is Lead.
Embodiment 5
The present embodiment is used for the preparation method of the doped zinc sulphide for illustrating micro-nano compound structure of the present invention and in augmented reality On application
Method according to embodiment 1 prepares the doped zinc sulphide of micro-nano compound structure, except for the difference that, described ultrasonication Time is 96 hours, and ultrasonic power is 1600W.
Embodiment 6
The present embodiment is used for the preparation method of the doped zinc sulphide for illustrating micro-nano compound structure of the present invention and in augmented reality On application
Method according to embodiment 1 prepares the doped zinc sulphide of micro-nano compound structure, except for the difference that, in step (1), ultrasound Often work when broken 3 seconds, rest 1.5 seconds.
Embodiment 7
The present embodiment is used for the preparation method of the doped zinc sulphide for illustrating micro-nano compound structure of the present invention and in augmented reality On application
Method according to embodiment 1 prepares the doped zinc sulphide of micro-nano compound structure, except for the difference that, in step (2), described Thin film is affixed at human heart, and during heart beating, the position of correspondence activity can send orange light.By collecting data and analysis, can To read the beat intensity and frequency of people in the form of light, many perception are realized, and visible ray can also be directly read by reader, Realize the multi output of information.
Embodiment 8
The present embodiment is used for the preparation method of the doped zinc sulphide for illustrating micro-nano compound structure of the present invention and in augmented reality On application
Method according to embodiment 1 prepares the doped zinc sulphide of micro-nano compound structure, except for the difference that, in step (2), micro-nano ZnS: Mn granule of composite construction and silicone rubber (Beijing sea cowry thinks Science and Technology Ltd.'s commercially available product) are according to the ratio that mass ratio is 6: 4 Example mixing.
Comparative example 1
This comparative example is used for the preparation method of the doped zinc sulphide of the micro-nano compound structure for illustrating reference and in augmented reality On application
Method according to embodiment 1 prepares the doped zinc sulphide of micro-nano compound structure, except for the difference that, the ultrasonication work( Rate is 100W.
Comparative example 2
This comparative example is used for the preparation method of the doped zinc sulphide of the micro-nano compound structure for illustrating reference and in augmented reality On application
Method according to embodiment 1 prepares the doped zinc sulphide of micro-nano compound structure, except for the difference that, the micro-nano for obtaining ZnS: Mn granule of composite construction and silicone rubber (Beijing sea cowry thinks Science and Technology Ltd.'s commercially available product) are according to the ratio that mass ratio is 5: 5 Example mixing.
Test case
(1) obtained by dripping tower experimental technique with the sensitivity parameter that pressure is calculated, by six axle powers and torque sensor Pressure is obtained, light intensity is obtained by slr camera.Six axle powers and torque sensor are that the ATT companies trade mark is the commercially available of Nano17 Product.Slr camera be Canon 600D, 50-1.8mm micro-lenss.
(2) obtained by dripping tower experimental technique with the sensitivity parameter of energy balane, luminous energy is obtained by slr camera, led to The conversion Calculation that gravitional force is crossed with kinetic energy obtains the sensitivity represented with energy.Slr camera is Canon 600D, 50-1.8mm Micro-lenss.
(3) optical signalling matches precision for measurement 100 times and benchmark result of the comparison with action.
(4) the real-time response time is with high-speed camera video recording acquisition, 1000 frame recording per second.High-speed camera is Vision Commercially available product of the Research companies trade mark for Phantom HD GOLD.
During the film hardening for being used, air dry oven used for Shanghai Fuma Experiment Equipment Co., Ltd.'s trade mark is The commercially available product of DGX-9053B-1.
Table 1
By such as upper table 1 as can be seen that compared with comparative example 1-2, the doping of micro-nano compound structure prepared by the present invention vulcanizes When for augmented reality, which has higher sensitivity, matching precision to zinc, and is capable of achieving real-time response.And at this In the case of invention is preferred, for example, the species of nano-particle, diameter ratio of micro-nano particle etc. are changed, the material of the preparation Mechanoluminescence performance further can be lifted.
The preferred embodiment of the present invention described in detail above, but, the present invention is not limited in above-mentioned embodiment Detail, the present invention range of the technology design in, various simple variants can be carried out to technical scheme, this A little simple variants belong to protection scope of the present invention.
It is further to note that each particular technique feature described in above-mentioned specific embodiment, in not lance In the case of shield, can be combined by any suitable means.In order to avoid unnecessary repetition, the present invention to it is various can The compound mode of energy is no longer separately illustrated.
Additionally, combination in any between a variety of embodiments of the present invention, can also be carried out, as long as which is without prejudice to this The thought of invention, which should equally be considered as content disclosed in this invention.

Claims (8)

1. the doped zinc sulphide of micro-nano compound structure is prepared and its application on augmented reality.
2. structure according to claim 1, wherein, the micro-nano compound structure is that nano-particle adsorbs on micron particle Gained;
Preferably, a diameter of 5-200nm of the nano-particle;
Preferably, a diameter of 2-50 μm of the micron doped zinc sulphide granule;
Preferably, the micro-nano particle diameter ratio is 20, when mol ratio is 1: 200, the mechanoluminescence susceptiveness of doped zinc sulphide It is most strong.
3. preparation according to claim 1, wherein, the doped zinc sulphide preparation method of the micro-nano compound structure includes: Transition metal element doped zinc sulfide powder is scattered in ethanol, at room temperature ultrasonication 72-96 hours, ultrasonic power For 1600-2000W, micro-nano particle diameter ratio is obtained for 20-30;
Preferably, doped zinc sulphide powder and the mass ratio of ethanol are 1: 10, are often worked the 2-3 seconds during ultrasonication, rest 1-2 Second, it is to avoid system is overheated.
4. the nano-particle according to claim 1,2 and 3, wherein, nano-particle can be a micron doped zinc sulphide ultrasound Crush, or added by the way of wet-mixed-drying, under the premise of particle diameter identical, nano-particle is not Family name's hardness is higher, and the doped zinc sulphide mechanoluminescence performance of micro-nano compound structure is better;
Preferably, using 100nm silica nanosphere effects be better than 100nm doped zinc sulphide particle effects be better than 100nm gather Styrene ball;
Preferably, 100nm silica nanospheres and 2 μm of doped zinc sulphide micron particle are scattered according to mol ratio 200: 1 In ethanol, 48-72 hours are stirred at 60 DEG C, is dried at 25-60 DEG C.The silica nanosphere uniform adsorption for obtaining is in doping sulfur Change on zinc micron particle, form micro-nano compound structure.
5. augmented reality application according to claim 1, wherein, different from depended software and the augmented reality of animation, institute The augmented reality stated is to prepare angle from material, perceives multi output the truly human action of realization more, allows people's It can be luminous that a dimension, i.e. emotion have been expressed more with action, and the power of light is relevant with emotion height action speed, not only On daytime, and the exchange of body language can also be realized at night between men, this body language is exactly light, is the mankind The upgrading of expression meanses, the enhancing to reality.
6. augmented reality according to claim 5, wherein, realization rate is to paste the doped zinc sulphide of micro-nano compound structure In positions such as human body each muscle group, heart and pulses, when a certain action is completed, respective muscle position can be luminous, By collecting data and analysis, the health status such as emotion, strength and the pulse beat of people can be obtained, realize perceiving more, and Showed by the form of light, realize multi output;
Preferably, the light of the augmented reality is visible ray, and wave-length coverage can cover visible light wave range, with orange light, green glow, indigo plant Light and white light are most commonly seen.
7. the nano-particle according to claim 1,2,3 and 4, wherein, except spherical nanoparticle, also containing lamellar, ellipse The pattern of circle, taper and irregular polygon;
Preferably, the nano-particle is selected from silicon dioxide, doped zinc sulphide, zinc sulfide, Graphene, graphite alkene, white carbon black, dioxy Change titanium, diamond, aluminium oxide, gold, silver, copper, zirconium dioxide, nickel oxide, Zinc Oxide, the one kind in Calcium Carbonate and CNT or It is various.
8. in the doped zinc sulphide of the micro-nano compound structure in claim 2 and 7 described in any one, claim 3 and 4 arbitrarily Application of the doped zinc sulphide preparation method of the micro-nano compound structure described in augmented reality.
CN201611079268.4A 2016-11-30 2016-11-30 Preparation of doped zinc sulfide with micro-nano composite structure and application thereof in augmented reality Pending CN106590634A (en)

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