CN108455557A - Nitrogen sulphur codope ordered mesoporous carbon material and its preparation method and application - Google Patents

Nitrogen sulphur codope ordered mesoporous carbon material and its preparation method and application Download PDF

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CN108455557A
CN108455557A CN201810195318.8A CN201810195318A CN108455557A CN 108455557 A CN108455557 A CN 108455557A CN 201810195318 A CN201810195318 A CN 201810195318A CN 108455557 A CN108455557 A CN 108455557A
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carbon material
nitrogen sulphur
sulphur codope
mesoporous carbon
ordered mesoporous
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CN108455557B (en
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陈亮
柳诗语
赖萃
张辰
李必胜
黄芳龙
秦蕾
易欢
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Central South University of Forestry and Technology
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    • C01BNON-METALLIC ELEMENTS; COMPOUNDS THEREOF; METALLOIDS OR COMPOUNDS THEREOF NOT COVERED BY SUBCLASS C01C
    • C01B39/00Compounds having molecular sieve and base-exchange properties, e.g. crystalline zeolites; Their preparation; After-treatment, e.g. ion-exchange or dealumination
    • C01B39/02Crystalline aluminosilicate zeolites; Isomorphous compounds thereof; Direct preparation thereof; Preparation thereof starting from a reaction mixture containing a crystalline zeolite of another type, or from preformed reactants; After-treatment thereof
    • C01B39/06Preparation of isomorphous zeolites characterised by measures to replace the aluminium or silicon atoms in the lattice framework by atoms of other elements, i.e. by direct or secondary synthesis
    • C01B39/08Preparation of isomorphous zeolites characterised by measures to replace the aluminium or silicon atoms in the lattice framework by atoms of other elements, i.e. by direct or secondary synthesis the aluminium atoms being wholly replaced
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N27/00Investigating or analysing materials by the use of electric, electrochemical, or magnetic means
    • G01N27/26Investigating or analysing materials by the use of electric, electrochemical, or magnetic means by investigating electrochemical variables; by using electrolysis or electrophoresis
    • G01N27/28Electrolytic cell components
    • G01N27/30Electrodes, e.g. test electrodes; Half-cells
    • G01N27/308Electrodes, e.g. test electrodes; Half-cells at least partially made of carbon
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    • C01INORGANIC CHEMISTRY
    • C01PINDEXING SCHEME RELATING TO STRUCTURAL AND PHYSICAL ASPECTS OF SOLID INORGANIC COMPOUNDS
    • C01P2002/00Crystal-structural characteristics
    • C01P2002/80Crystal-structural characteristics defined by measured data other than those specified in group C01P2002/70
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    • C01INORGANIC CHEMISTRY
    • C01PINDEXING SCHEME RELATING TO STRUCTURAL AND PHYSICAL ASPECTS OF SOLID INORGANIC COMPOUNDS
    • C01P2004/00Particle morphology
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    • 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
    • C01P2006/00Physical properties of inorganic compounds
    • C01P2006/12Surface area
    • CCHEMISTRY; METALLURGY
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    • C01P2006/00Physical properties of inorganic compounds
    • C01P2006/16Pore diameter

Abstract

The invention discloses a kind of nitrogen sulphur codope ordered mesoporous carbon materials and its preparation method and application, the ordered mesoporous carbon material is mainly with SBA 15 for mesopore molecular sieve template, dithizone is single carbon source, sulphur source and nitrogen source, it is polymerize using carbon tetrachloride as solvent, form nitrogen sulphur codope ordered mesopore carbon polymer, after resulting polymers high temperature pyrolysis, etched removal mesopore molecular sieve SBA 15 obtains nitrogen sulphur codope ordered mesoporous carbon material.Preparation method includes Zeolite synthesis, polymer prepares and pyrolysis, template removal.The nitrogen sulphur codope ordered mesoporous carbon material of the present invention has the advantages that high mechanical strength, uniform pore diameter, stability are strong, bio-compatibility is good, Electrochemical Detection superior performance, be it is a kind of can be with the environmentally friendly ordered mesoporous carbon material of extensive utilization, preparation method has many advantages, such as that technological process is simple, reaction condition is mild, environmental protection, can be used for preparing on a large scale.

Description

Nitrogen sulphur codope ordered mesoporous carbon material and its preparation method and application
Technical field
The invention belongs to the electrochemical sensing technical fields of functional form material, are related to a kind of element codope ordered mesopore carbon Material and its preparation method and application, and in particular to a kind of nitrogen sulphur codope ordered mesoporous carbon material and preparation method thereof and electrification Learn Application in Sensing.
Background technology
Porous carbon refers to the carbon material for having certain pore passage structure.According to determining for International Union of Pure and Applied Chemistry Justice, porous carbon materials can be divided into following three classes according to pore size:Porous carbon materials of the aperture less than 2nm are micropore carbon materials Material, the porous carbon materials more than 50nm are macropore carbon material, and the porous carbon materials between 2-50nm are meso-porous carbon material.Wherein, Whether mesoporous carbon can orderly be divided into ordered mesoporous carbon material and unordered meso-porous carbon material according to mesoporous.
Ordered mesoporous carbon material is a kind of novel non-silicon-based mesoporous material, the hole with uniform aperture, high-sequential Road distribution and huge specific surface area and Kong Rong, are with a wide range of applications in absorption, catalysis and biological medicine etc.. Wherein, ordered mesoporous carbon material has since it is with larger specific surface area, relatively large aperture and regular pore passage structure Conducive to the enrichment and transmission of ion, and itself has high activity, is easy to surface modification or functionalization so that order mesoporous carbon materials Material, which rapidly develops, becomes a kind of emerging electrochemical material.
Numerous studies document shows that S, B, P, F, N are adulterated in ordered mesoporous carbon material can not only change urging for material Change performance, while also oxygen-containing functional group can be introduced into material surface, to improve absorption and the redox ability of carbon material. Relative to single ordered mesoporous carbon material, electric conductivity, wettability and the hydrophily of hybrid ordered mesoporous carbon material all obtain Larger promotion.Currently, for the ordered mesopore carbon of single element doping, the doping of dual element can cause carbon material Certain change occurs for crystal structure, is conducive to the raising of chemical property, and still, the ordered mesopore carbon of dual element doping is often Many kinds of substance is needed to provide corresponding element source, and preparation process is relative complex, and manufacturing cost also further increases, and is unfavorable for Extensive preparation and application limit its application and development, and the ordered mesopore carbon of dual element doping is mainly used in raising Electrocatalysis characteristic, application range are smaller.Therefore, the novel ordered mesopore carbon that can be applied to the other directions of electrochemical field is explored Material has critically important practical significance and current demand.
Invention content
The technical problem to be solved in the invention is to overcome the deficiencies of the prior art and provide a kind of high mechanical strength, aperture Uniformly, stability is strong, bio-compatibility is good, Electrochemical Detection superior performance and environmental-friendly nitrogen sulphur codope are order mesoporous Carbon material and its preparation method and application, the application refer in particular to the application in electrochemical sensing (also making Electrochemical Detection) field.
In order to solve the above technical problems, the present invention uses following technical scheme:
A kind of nitrogen sulphur codope ordered mesoporous carbon material, the nitrogen sulphur codope ordered mesoporous carbon material is mainly with SBA-15 It is polymerize using carbon tetrachloride as solvent, shape with dithizone for single carbon source, sulphur source and nitrogen source for mesopore molecular sieve template At nitrogen sulphur codope ordered mesopore carbon polymer, nitrogen sulphur codope ordered mesopore carbon polymer is carved after high temperature pyrolysis makes carbonization Etching off removes mesoporous molecular sieve SBA-15, obtains nitrogen sulphur codope ordered mesoporous carbon material.
The technical concept total as one, the present invention also provides a kind of preparation sides of nitrogen sulphur codope ordered mesoporous carbon material Method includes the following steps:
The synthesis of S1, mesoporous molecular sieve SBA-15:By block copolymer P123 and tetraethyl orthosilicate in hydrochloric acid solution It is uniformly mixed, then carries out crystallization and roasting, obtain mesoporous molecular sieve SBA-15;
The preparation of S2, nitrogen sulphur codope ordered mesopore carbon polymer:By gained mesoporous molecular sieve SBA-15, dithizone and four The mixing of chlorination carbon and ultrasonic disperse, carry out heating polymerization by gained mixture, obtain nitrogen sulphur codope ordered mesopore carbon polymer;
S3, high temperature pyrolysis:By gained nitrogen sulphur codope ordered mesopore carbon polymer grind after under inert gas protection into Row high temperature pyrolysis, makes polymer carbonization, obtains thermal decomposition product;
The etching of S4, mesoporous molecular sieve SBA-15:Gained thermal decomposition product is added in sodium hydroxide solution and is stirred, with Etching removal mesoporous molecular sieve SBA-15 template, is washed out and dries, obtain nitrogen sulphur codope ordered mesoporous carbon material.
In the preparation method of above-mentioned nitrogen sulphur codope ordered mesoporous carbon material, it is preferred that described mesoporous in the step S2 The mass ratio of molecular sieve SBA-15 and dithizone is 1: 1~1.25, and the time of the ultrasonic disperse is 2h~4h, the ultrasound point Gained mixture is first stirred into 10h~12h at normal temperatures after dissipating, then is warming up to 60 DEG C~100 DEG C and is polymerize, polymerization time is 6h~12h.
In the preparation method of above-mentioned nitrogen sulphur codope ordered mesoporous carbon material, it is preferred that described embedding in the step S1 The mass ratio of section copolymer p 123 and tetraethyl orthosilicate is 1: 2~3, and described be uniformly mixed refers in 35 DEG C~40 DEG C water-bath items Stir 20h~for 24 hours under part, the crystallization refer at 85 DEG C~135 DEG C heating water bath for 24 hours~48h makes generation crystallization, the roasting The temperature of burning is 550 DEG C~800 DEG C, and the time of the roasting is 5h~8h.
In the preparation method of above-mentioned nitrogen sulphur codope ordered mesoporous carbon material, it is preferred that described lazy in the step S3 Property gas be nitrogen, the high temperature pyrolysis use procedural heating:It is risen to first with the heating rate of 2 DEG C/min~5 DEG C/min 600 DEG C~900 DEG C, then keep 2h~4h.
In the preparation method of above-mentioned nitrogen sulphur codope ordered mesoporous carbon material, it is preferred that in the step S4, the hydrogen The temperature of a concentration of 1mol/L~2mol/L of sodium hydroxide solution, the sodium hydroxide solution stirring are 80 DEG C~100 DEG C, described Dry temperature is 60 DEG C~100 DEG C.
In the preparation method of above-mentioned nitrogen sulphur codope ordered mesoporous carbon material, it is preferred that, first will be embedding in the step S1 Section copolymer p 123 is placed in dissolving in hydrochloric acid solution and obtains the hydrochloric acid solution of block copolymer P123, then by tetraethyl orthosilicate It is added dropwise in the hydrochloric acid solution of block copolymer P123 and is mixed.
In the preparation method of above-mentioned nitrogen sulphur codope ordered mesoporous carbon material, it is preferred that in the step S4, the heat Solution product filters after being placed in sodium hydroxide solution stirring 0.5h~1h, and the sodium hydroxide solution then more renewed repeats abovementioned steps 2~4 times, to realize etching process.
The technical concept total as one, the present invention also provides a kind of above-mentioned nitrogen sulphur codope ordered mesoporous carbon material or Nitrogen sulphur codope ordered mesoporous carbon material answering in electrochemical sensing (Electrochemical Detection) made from the above-mentioned preparation method of person With.
In above-mentioned application, it is preferred that the application includes the following steps:By nitrogen sulphur codope ordered mesoporous carbon material point It is scattered in perfluorinated sulfonic acid Nafion and drop coating is in glassy carbon electrode surface, air-dry at room temperature, as in three electrode system Working electrode, the reference electrode in three electrode system are saturated calomel electrode, are platinum electrode to electrode;The nitrogen sulphur is total The additive amount for adulterating ordered mesoporous carbon material be per 5mL~10mL perfluorinated sulfonic acids nitrogenous sulphur codope ordered mesopore carbon 50mg~ 100mg。
In the step S2 of the present invention, heating polymerization can carry out in vacuum drying chamber, equal using vacuum or non-vacuum environment Can, material has also obtained drying in polymerization process, and the material for being put into the carbonization of tube furnace high temperature is made not contain moisture.
In the step S2 of the present invention, carbon tetrachloride is intended only as solvent, can be vapored away in stirring and heating process, because This is appropriate.
In the step S3 of the present invention, procedural heating refers to that the temperature program of tube furnace was arranged for two stages, one For the temperature rise period, one is temperature holding stage, by being artificially arranged, is controlled by the program of tube furnace.
In the application of the present invention, by nitrogen sulphur codope ordered mesoporous carbon material drop coating in glassy carbon electrode surface, mainly answer Pollutant is detected for electrochemical sensing, the materials conductive performance is good, and can be loaded more with big specific surface area Probe for detecting pollutant, can efficient application in electrochemical sensing detection field.
The main innovation point of the present invention is:
1, in the prior art, ordered mesoporous carbon material be applied to mostly electro-catalysis field and adsorbing domain (with redox, Absorption etc. is based on performances), and based on being adulterated with single element, even if there are multi-element dopings, it is also desirable to which many kinds of substance provides Corresponding element source prepares complexity, of high cost.Applicant is on the basis of numerous studies, it was found that existing ordered mesopore carbon A variety of limitations present in material, it is proposed that improve its technology of preparing, widen the technical goal of its application field, creatively It is carved by the synthesis of mesoporous molecular sieve SBA-15, the preparation of nitrogen sulphur codope ordered mesopore carbon polymer, high temperature pyrolysis and template Integrated artistic technology is lost to effectively improve chemical property (cyclic voltammetry and the friendship of nitrogen sulphur codope ordered mesoporous carbon material After flow impedance method can intuitively illustrate that ordered mesoporous carbon material is connected to glassy carbon electrode surface so that glass-carbon electrode electric conductivity improves, To which the electrochemical sensing performance for symbolizing the material is good), it realizes ordered mesoporous carbon material and is led in electrochemical sensing (detection) The efficient application in domain.
2, the present invention uses mesoporous molecular sieve SBA-15 during preparing nitrogen sulphur codope ordered mesoporous carbon material Synthesis, nitrogen sulphur codope ordered mesopore carbon polymerization, high temperature pyrolysis and template etching technics, technological process is simple, reaction Mild condition, environmental protection, and can prepare on a large scale.Wherein, polymerization technique mainly makes SBA-15 polymerize with dithizone so that Nitrogen, element sulphur can be successfully doped into ordered mesoporous carbon material, in polymerization technique, also specially use ultrasonic disperse, mesh Be to make dithizone (nitrogen, element sulphur provide source) that can be sufficient filling with into the duct of SBA-15, improve material meso-hole structure at The success rate of type.
3, element codope ordered mesoporous carbon material large specific surface area prepared by the present invention, uniform pore diameter, high mechanical strength, And there is good electric conductivity, materials'use can be expanded as useful signal in Electrochemical Detection (electrochemical sensing), and And the element codope can bring a large amount of active site, can connect more probes for being used for Electrochemical Detection so that The sensitivity of Electrochemical Detection greatly improves.Therefore, the element codope ordered mesoporous carbon material that prepared by the present invention is applied to electricity It has broad application prospects in chemical sensitisation detection.
Compared with the prior art, the advantages of the present invention are as follows:
1. the present invention provides a kind of nitrogen sulphur codope ordered mesoporous carbon material, which replicates well The orderly hexagon pore passage structure of mesoporous molecular sieve SBA-15, have the advantages that it is similar with mesoporous molecular sieve SBA-15, including With high-specific surface area, big Kong Rong, uniform sequential pore passage structure etc.;And after high temperature cabonization, there is mechanical strength It is high, stability is strong, bio-compatibility is good (fire successful carbon material all and be nontoxic, can bio-compatible), electric conductivity is excellent More and advantages of environment protection.
2. the present invention provides a kind of preparation method of nitrogen sulphur codope ordered mesoporous carbon material, the ordered mesoporous carbon material Mainly using SBA-15 as mesopore molecular sieve template, dithizone be single carbon source, sulphur source and nitrogen source, using carbon tetrachloride as solvent into Row polymerization forms nitrogen sulphur codope ordered mesopore carbon polymer then the polymer high temperature cabonization is etched mesopore molecular sieve Nitrogen sulphur codope ordered mesoporous carbon material is prepared in SBA-15.The element codope ordered mesoporous carbon material is only with double sulphur Hydrazone does not need additional substance to provide corresponding element source, manufacturing cost is low as single carbon source, sulphur source and nitrogen source; And handled by ultrasonic disperse and polymerization so that the meso-hole structure of nitrogen sulphur codope ordered mesopore carbon is easier to be molded and nitrogen, Element sulphur can Effective Doping into order mesoporous carbon structure;In addition, the present invention uses mesoporous molecular sieve SBA-15 as hard mold Plate synthetic nitrogen sulphur codope ordered mesopore carbon, reaction condition is mild, preparation process is simple, requires relatively experimental instrument and equipment Material that is low, preparing is environmentally friendly material, can be used for preparing on a large scale.
3. the present invention also provides a kind of application of nitrogen sulphur codope ordered mesoporous carbon material in electrochemical sensing, mesh Before, nitrogen sulphur codope ordered mesoporous carbon material is mainly used in electro-catalysis field, also has certain applications in adsorbing domain, but Never there is the precedent applied to electrochemical sensing detection field.Nitrogen sulphur codope ordered mesopore carbon itself has huge specific surface Product, further, since the doping of nitrogen, element sulphur causes the spin density in carbon material between adjacent atom and charge density reallocation, So that the material significantly improves with a large amount of active site, catalytic performance and with higher electron transfer rate, very greatly The material electrochemical performance is improved in degree, this makes the material have broad application prospects in electrochemical sensing field.
Description of the drawings
In order to make the object, technical scheme and advantages of the embodiment of the invention clearer, below in conjunction with the embodiment of the present invention In attached drawing, technical solution in the embodiment of the present invention carries out clear, complete description.
Fig. 1 is the scanning electron microscope (SEM) photograph of nitrogen sulphur codope ordered mesoporous carbon material in the embodiment of the present invention 1.
Fig. 2 is the transmission electron microscope picture of nitrogen sulphur codope ordered mesoporous carbon material in the embodiment of the present invention 1.
Fig. 3 is the energy spectrum diagram of nitrogen sulphur codope ordered mesoporous carbon material in the embodiment of the present invention 1.
Fig. 4 is the electrochemical current signal detection figure of nitrogen sulphur codope ordered mesoporous carbon material in the embodiment of the present invention 2.
Fig. 5 is the electrochemical impedance signal detection figure of nitrogen sulphur codope ordered mesoporous carbon material in the embodiment of the present invention 3.
Fig. 6 is the transmission electricity of the nitrogen sulphur codope ordered mesoporous carbon material without S2 step process in comparative example 1 of the present invention Mirror figure.
Specific implementation mode
Below in conjunction with Figure of description and specific preferred embodiment, the invention will be further described, but not therefore and It limits the scope of the invention.
Material and instrument employed in following embodiment are commercially available.
Embodiment 1
A kind of nitrogen sulphur codope ordered mesoporous carbon material of the present invention, the nitrogen sulphur codope ordered mesoporous carbon material mainly with SBA-15 is mesopore molecular sieve template, and dithizone is single carbon source, sulphur source and nitrogen source, is gathered using carbon tetrachloride as solvent It closes, forms nitrogen sulphur codope ordered mesopore carbon polymer, after resulting polymers high temperature pyrolysis is made polymer carbonization, then etch Mesoporous molecular sieve SBA-15 is removed, nitrogen sulphur codope ordered mesoporous carbon material is obtained.
A kind of preparation method of the nitrogen sulphur codope ordered mesoporous carbon material of the present embodiment, includes the following steps:
The synthesis of S1, mesoporous molecular sieve SBA-15:2g block copolymers P123 is placed in hydrochloric acid solution and is dissolved, hydrochloric acid is molten Liquid is mixed to get with 15mL deionized waters by a concentration of 2mol/L hydrochloric acid of 60mL, and the salt of block copolymer P123 is obtained after dissolving Acid solution.Then 4.25g tetraethyl orthosilicates are added dropwise in block copolymer P123 solution, the stirring in water bath at 35 DEG C For 24 hours, it transfers in the high-temperature high-pressure reaction kettle of polytetrafluoroethylsubstrate substrate, heating water bath carries out crystalline substance for 24 hours under the conditions of 100 DEG C Change, obtains mixed liquor.Mixed liquor suction filtration is taken into precipitation again, is washed with deionized to neutrality, is dried, place into tube furnace with The heating rate of 5 DEG C/min is warming up to 550 DEG C and keeps 5h, obtains mesoporous molecular sieve SBA-15.
The preparation of S2, nitrogen sulphur codope ordered mesopore carbon polymer:1g mesoporous molecular sieve SBA-15s and 1g dithizones are added Enter into 20mL carbon tetrachloride, after ultrasonic disperse 2h, then stir 10h at normal temperatures so that dithizone and mesopore molecular sieve SBA- 15 are uniformly mixed, and then gained mixture is placed in 60 DEG C of vacuum drying ovens and polymerize 12h, obtains nitrogen sulphur codope ordered mesopore carbon Polymer.
S3, nitrogen sulphur codope ordered mesopore carbon polymer high temperature pyrolysis:Gained nitrogen sulphur codope ordered mesopore carbon is polymerize Object is ground, and is subsequently placed in quartz boat, is risen to 800 DEG C under nitrogen protection with the heating rate of 3 DEG C/min, then at 800 DEG C Place keeps 3h, makes polymer carbonization, obtains thermal decomposition product.
The etching of S4, mesoporous molecular sieve SBA-15:Gained thermal decomposition product is placed in the NaOH of 80mL, 2mol/L at 80 DEG C It is filtered after being stirred one hour in solution, the NaOH solution then more renewed repeats abovementioned steps three times, with mesoporous point of etching removal Son sieve SBA-15 templates, then solution is washed to neutrality and dries 4h in 100 DEG C of baking ovens, it is order mesoporous to obtain nitrogen sulphur codope Carbon material.
Fig. 1 is the scanning electron microscope (SEM) photograph of nitrogen sulphur codope ordered mesoporous carbon material in the present embodiment, from fig. 1, it can be seen that nitrogen sulphur is total Doping ordered mesopore carbon is elongated, and the regular arrangement of orderly pore passage structure, this illustrates that nitrogen sulphur codope ordered mesopore carbon is fine Ground replicates the structure of mesoporous molecular sieve SBA-15.
Fig. 2 is the transmission electron microscope picture of nitrogen sulphur codope ordered mesoporous carbon material in the present embodiment, as can be seen from Figure 2, the material Internal aperture is uniform sequential, and aperture diameter is about 8nm.
Fig. 3 is the energy spectrum diagram of nitrogen sulphur codope ordered mesoporous carbon material in the present embodiment, as can be seen from Figure 3, C, O, S, N element It is uniformly dispersed in sample, this illustrates that S, N element are successfully doped into order mesoporous carbon structure.
Embodiment 2
A kind of electrochemical current signal detection of the nitrogen sulphur codope ordered mesoporous carbon material of embodiment 1, including following step Suddenly:
(1) using glass-carbon electrode as working electrode, saturated calomel electrode is used as reference electrode, platinum electrode to electricity Aforementioned three electrodes connect with electrochemical workstation, establish three-electrode system by pole;
(2) nitrogen sulphur codope ordered mesoporous carbon material is dispersed in Nafion and drop coating is in glassy carbon electrode surface, then It to bare electrode and is spotted with the glass-carbon electrode of nitrogen sulphur codope ordered mesoporous carbon material respectively and follow the scanning of bad voltammetry.
Fig. 4 is the electrochemical current signal detection figure of nitrogen sulphur codope ordered mesoporous carbon material in the present embodiment, can from Fig. 4 Know, the glass-carbon electrode current peak for being spotted with nitrogen sulphur codope ordered mesoporous carbon material significantly increases, this illustrates nitrogen sulphur codope The electric conductivity of ordered mesoporous carbon material is good, has higher electron transfer rate, and can be used as in electrochemical sensing has Imitate amplification of signal materials'use.
Embodiment 3
A kind of electrochemical impedance signal detection of the nitrogen sulphur codope ordered mesoporous carbon material of embodiment 1, including following step Suddenly:
(1) using glass-carbon electrode as working electrode, saturated calomel electrode is used as reference electrode, platinum electrode to electricity Aforementioned three electrodes connect with electrochemical workstation, establish three-electrode system by pole;
(2) nitrogen sulphur codope ordered mesopore carbon is dispersed in Nafion and drop coating is in glassy carbon electrode surface, then distinguished Electrochemical impedance spectroscopy scanning is carried out to bare electrode and the glass-carbon electrode for being spotted with nitrogen sulphur codope ordered mesopore carbon.
Fig. 5 is the electrochemical impedance signal detection figure of nitrogen sulphur codope ordered mesoporous carbon material in the present embodiment, horizontal in figure Coordinate represents impedance real part, and ordinate represents imaginary impedance.Electrochemical impedance spectroscopy is made of a circular arc and straight line, is When arc-shaped, voltage change is in high band, corresponds to electrochemical system median surface electronics transfer limited situation, i.e. polarization electricity Resistance;When it is linear, voltage change is in low-frequency range, corresponds to electrolyte solution diffusion limited process, ie in solution resistance.From For Fig. 5 it is found that the glass-carbon electrode resistance value for being spotted with nitrogen sulphur codope ordered mesoporous carbon material is obviously reduced, this and above-mentioned electrochemistry are electric It is consistent to flow signal detecting result, equally illustrates that the electric conductivity of nitrogen sulphur codope ordered mesoporous carbon material is superior, there is higher Electron transfer rate, can in electrochemical sensing as useful signal expand materials'use.
Comparative example 1
A kind of ordered mesoporous carbon material, it is essentially identical with the preparation process of embodiment 1, it differs only in:Do not use step S2, but after mesoporous molecular sieve SBA-15, dithizone and carbon tetrachloride are mixed and are dried at normal temperatures, it directly carries out high Warm solution, obtains ordered mesoporous carbon material.After testing, as shown in fig. 6, it is total without the nitrogen sulphur of ultrasonic disperse and polymerization procedure Doping ordered mesopore carbon part meso-hole structure caves in, and specific surface area also accordingly reduces, therefore useful signal can not be used as to expand Increase materials'use.
The above described is only a preferred embodiment of the present invention, being not intended to limit the present invention in any form.Though So the present invention has been disclosed with preferred embodiment as above, and however, it is not intended to limit the invention.It is any to be familiar with those skilled in the art Member, in the case where not departing from the Spirit Essence and technical solution of the present invention, all using in the methods and techniques of the disclosure above Appearance makes many possible changes and modifications to technical solution of the present invention, or is revised as the equivalent embodiment of equivalent variations.Therefore, Every content without departing from technical solution of the present invention is made to the above embodiment any simple according to the technical essence of the invention Modification, equivalent replacement, equivalence changes and modification, still fall within technical solution of the present invention protection in the range of.

Claims (10)

1. a kind of nitrogen sulphur codope ordered mesoporous carbon material, which is characterized in that the nitrogen sulphur codope ordered mesoporous carbon material master Will using SBA-15 as mesopore molecular sieve template, with dithizone be single carbon source, sulphur source and nitrogen source, using carbon tetrachloride as solvent into Row polymerization, forms nitrogen sulphur codope ordered mesopore carbon polymer, and nitrogen sulphur codope ordered mesopore carbon polymer makes through high temperature pyrolysis After carbonization, etching removal mesoporous molecular sieve SBA-15 obtains nitrogen sulphur codope ordered mesoporous carbon material.
2. a kind of preparation method of nitrogen sulphur codope ordered mesoporous carbon material, includes the following steps:
The synthesis of S1, mesoporous molecular sieve SBA-15:Block copolymer P123 and tetraethyl orthosilicate are mixed in hydrochloric acid solution Uniformly, crystallization and roasting are then carried out, mesoporous molecular sieve SBA-15 is obtained;
The preparation of S2, nitrogen sulphur codope ordered mesopore carbon polymer:By gained mesoporous molecular sieve SBA-15, dithizone and four chlorinations Carbon mixing and ultrasonic disperse, carry out heating polymerization by gained mixture, obtain nitrogen sulphur codope ordered mesopore carbon polymer;
S3, high temperature pyrolysis:It is carried out under inert gas protection after gained nitrogen sulphur codope ordered mesopore carbon polymer is ground high Warm solution, makes polymer carbonization, obtains thermal decomposition product;
The etching of S4, mesoporous molecular sieve SBA-15:Gained thermal decomposition product is added in sodium hydroxide solution and is stirred, with etching Mesoporous molecular sieve SBA-15 template is removed, is washed out and dries, obtain nitrogen sulphur codope ordered mesoporous carbon material.
3. the preparation method of nitrogen sulphur codope ordered mesoporous carbon material according to claim 2, which is characterized in that the step In rapid S2, the mass ratio of the mesoporous molecular sieve SBA-15 and dithizone is 1: 1~1.25, and the time of the ultrasonic disperse is 2h Gained mixture is first stirred 10h~12h after the ultrasonic disperse, then is warming up to 60 DEG C~100 DEG C progress by~4h at normal temperatures Polymerization, polymerization time are 6h~12h.
4. the preparation method of nitrogen sulphur codope ordered mesoporous carbon material according to claim 2, which is characterized in that the step In rapid S1, the mass ratio of the block copolymer P123 and tetraethyl orthosilicate is 1: 2~3, and described be uniformly mixed refers to 35 DEG C~40 DEG C of water bath conditions under stirring 20h~for 24 hours, the crystallization refer at 85 DEG C~135 DEG C heating water bath for 24 hours~48h makes Crystallization is generated, the temperature of the roasting is 550 DEG C~800 DEG C, and the time of the roasting is 5h~8h.
5. the preparation method of nitrogen sulphur codope ordered mesoporous carbon material according to claim 2, which is characterized in that the step In rapid S3, the inert gas is nitrogen, and the high temperature pyrolysis uses procedural heating:First with 2 DEG C/min~5 DEG C/min's Heating rate rises to 600 DEG C~900 DEG C, then keeps 2h~4h.
6. the preparation method of nitrogen sulphur codope ordered mesoporous carbon material according to claim 2, which is characterized in that the step In rapid S4, the temperature of a concentration of 1mol/L~2mol/L of the sodium hydroxide solution, the sodium hydroxide solution stirring are 80 DEG C~100 DEG C, the temperature of the drying is 60 DEG C~100 DEG C.
7. the preparation method of the nitrogen sulphur codope ordered mesoporous carbon material according to any one of claim 2~6, feature It is, in the step S1, block copolymer P123 is first placed in dissolving in hydrochloric acid solution and obtains the salt of block copolymer P123 Then tetraethyl orthosilicate is added dropwise in the hydrochloric acid solution of block copolymer P123 and mixes by acid solution.
8. the preparation method of the nitrogen sulphur codope ordered mesoporous carbon material according to any one of claim 2~6, feature It is, in the step S4, the thermal decomposition product filters after being placed in sodium hydroxide solution stirring 0.5h~1h, then more renews Sodium hydroxide solution repeats abovementioned steps 2~4 times, to realize etching process.
9. a kind of nitrogen sulphur codope ordered mesoporous carbon material as described in claim 1 or any one of such as claim 2~8 Application of the nitrogen sulphur codope ordered mesoporous carbon material in electrochemical sensing made from the preparation method.
10. application according to claim 9, which is characterized in that the application includes the following steps:Nitrogen sulphur is co-doped with Sequence meso-porous carbon material is distributed in perfluorinated sulfonic acid Nafion and drop coating is in glassy carbon electrode surface, is air-dried at room temperature, as three electricity Working electrode in the work system of pole, the reference electrode in three electrode system are saturated calomel electrode, are platinum filament to electrode Electrode;The additive amount of the nitrogen sulphur codope ordered mesoporous carbon material is to be co-doped with per the nitrogenous sulphur of 5mL~10mL perfluorinated sulfonic acids Sequence mesoporous carbon 50mg~100mg.
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