CN1556171A - Dual wave section fluorescent material and its preparaton method - Google Patents

Dual wave section fluorescent material and its preparaton method Download PDF

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Publication number
CN1556171A
CN1556171A CNA2004100234180A CN200410023418A CN1556171A CN 1556171 A CN1556171 A CN 1556171A CN A2004100234180 A CNA2004100234180 A CN A2004100234180A CN 200410023418 A CN200410023418 A CN 200410023418A CN 1556171 A CN1556171 A CN 1556171A
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fluorescent material
rare earth
solution
dissolved
waveband
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CN1315981C (en
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波 唐
唐波
董玉明
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Shandong Normal University
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Shandong Normal University
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Abstract

A dual-band fluorescent material has a chemical formula: (MxEu1-x)AyBz, where M is chosen from Gd, Y, Tb, Dy and La, B is the compound containing aromatic heterocycle or the compound containing P=O, x=0-1, y=2,3, or 4, and z=1 or 2. Its preparing process includes dissolving RE chloride (or nitrate) in absolute to obtain solution A, dissolving the mixture of said organic ligands in absolute alcohol to obtain solution B, mixing A with B, stirring, heating, laying aside, washing, filtering and drying the deposit.

Description

A kind of two waveband fluorescent material and preparation method
Specification sheets
Technical field
The invention belongs to field of light emitting materials, relate in particular to a kind of two waveband fluorescent material and preparation method.
Background technology
The light of different-waveband has different effects to growth and development of plants in the solar spectrum, and UV-light has detrimentally affect to the growth of plant, and yellow green light is sharp for the harmless nothing of plant, and blue light helps the growth of plant stem-leaf etc., and ruddiness then helps the reproductive growth of plant.Exploitation can absorb the agricultural light conversion film of ultraviolet light emission blue light and ruddiness, more science utilize sun power, promote the development of the high-tech ecological agriculture, key is to have the commentaries on classics light additive of efficient stable.
The plastic sheeting for farm use of having developed at present is broadly divided into three classes with changeing the light additive: inorganics, organism and rare earth organic complex.Wherein organism class fluorescent material mainly is organic reducing dyestuff and high-visibility pigment, and oxidation and Degradation easily take place under action of ultraviolet radiation this class fluorescent material, and photo and thermal stability is poor, and work-ing life is shorter.Inorganics class fluorescent material mostly is rare earth element oxysulfide or rare earth doped alkaline earth sulfide, aluminate, borate, silicate etc., and photo and thermal stability is superior, long service life, but add in the plastic sheeting for farm use poor with the consistency of resin.Comparatively speaking, rare earth organic complex class fluorescent material has photo and thermal stability and good with resin compatible preferably, is that comparatively the ideal plastic sheeting for farm use changes the light additive.
Because the superior performance of rare earth organic complex class fluorescent material, this field becomes the focus of research in recent years.The CN1098326C that CN1052493C, the 2003.1.8 that announces as the disclosed CN1105040A of Chinese patent 1995.7.12, the disclosed CN1132219A of 1996.10.2, the disclosed CN1140744A of 1997.1.22, the disclosed CN1186835A of 1998.7.8, the disclosed CN1221005A of 1999.6.30,2000.5.17 announces, its fluorescence additive are the rare earth organic complex of rare earth element and organic ligand formation.Yet above-mentioned fluorescent material only possesses the single band that absorbs ultraviolet light emission ruddiness changes the light function, can not realize the two band optical energy conversion of bionical attitude.
Goal of the invention
One of purpose of the present invention is to provide a kind of two waveband fluorescent material that can carry out the two band optical energy conversion at demand of plant growth, to carry out the exploitation of light conversion film, promotes agricultural development; Two of purpose provides simple, the mild condition of a kind of technology, the two waveband Preparation of Fluorescent Material method of easy handling.
One of purpose of the present invention can realize by following technical measures:
By selecting suitable part, synthetic two waveband fluorescent material general formula is: (M xEu 1-x) A yB z, M is one or more the arbitrary proportion combination in gadolinium (Gd), yttrium (Y), terbium (Tb), dysprosium (Dy), the lanthanum (La) in the formula; A is the beta diketone compounds; B is for being selected from 2,2 ' dipyridyl, phenanthroline, the containing heteroaromatic compound or be selected from trioctyl-phosphine oxide of oxine, triphenylphosphine oxide, tributylphosphine oxide contain the P=O compound, 0<x<1, y is 2 or 3 or 4, z is 1 or 2.
One of purpose of the present invention also can realize by following technical measures:
A is thenoyltrifluoroacetone (TTA) in described general formula, and B is phenanthroline (phen), and y is 3, and z is that the two waveband fluorescent material two waveband commentaries on classics light characteristic of making in 1 o'clock is the most remarkable.
Two of purpose of the present invention can realize by following technical measures:
A, get rare earth oxide earlier in composition in the general formula and ratio, be dissolved in dilute hydrochloric acid or the rare nitric acid, heating in water bath vapors away unnecessary water and acid, obtain the mixture of corresponding rare earth chloride or rare earth nitrate, be dissolved in the dehydrated alcohol again, perhaps get rare earth chloride or rare earth nitrate and be dissolved in the dehydrated alcohol, get solution I;
B, get organic ligand respectively by mol ratio in the general formula, mixed dissolution obtains solution II in dehydrated alcohol;
C, solution I and solution II are mixed, through stirring, heat, leaving standstill, washing and suction filtration, gained precipitate drying and get product.
The fluorescent material that the present invention makes is the pulverulent solids of uniform and smooth, particle diameter is about 0.2 μ m, can absorb the UV-light of 270~410nm, and be blue light and ruddiness with the energy transformation that absorbs, possess two waveband and change the light function, light intensity height and good stability, being suitable as plastic sheeting for farm use changes the light additive, meets demand of plant growth.UV-light concentrates irradiation experiment to show that fluorescent material has good light stability.The fusing point of fluorescent material is more than 220 ℃, and differential thermal and thermogravimetric experiment show that fluorescent material has good thermostability.One of two waveband fluorescent material characteristics provided by the invention be can be by changing M in the general formula composition and the value of x change the relative power that institute launches blue light and ruddiness, therefore, both can be used as the plastic sheeting for farm use additive that satisfies common proportion of crop planting demand (blue light and red light intensity are suitable), also can be used as satisfy special plantation demand (as a little less than the Lan Qianghong or blue weak red strong) the plastic sheeting for farm use additive, applicability is strong.In addition, fluorescent material provided by the invention also can be used as photic or electroluminescent material is applied to other field.Preparation method's technology of the present invention is simple, mild condition, and facility investment is few, easy handling.
Embodiment
Embodiment 1
Take by weighing Dy 2O 30.0537g (2.375 * 10 -4Mol) Eu 2O 30.0044g (1.25 * 10 -5Mol), be dissolved in excessive 6mol 1 -1In the dilute hydrochloric acid,, vapor away unnecessary water and acid, obtain the mixed microcrystalline of Yttrium trichloride and Europium trichloride, and then be dissolved in about 5ml dehydrated alcohol, obtain solution I with 80 ℃ of left and right sides heating in water bath; Take by weighing TTA0.3333g (1.50 * 10 -3Mol), phen 0.0991g (0.50 * 10 -3Mol), be dissolved in about 5ml dehydrated alcohol, obtain solution II; Under the normal temperature solution I and solution II are mixed, stir and, left standstill under the normal temperature 3-5 days, obtain milky white precipitate with 80 ℃ of left and right sides heating in water bath 5 minutes.To gained precipitation absolute ethanol washing, suction filtration, the dry multi-kernel rare-earth organic coordination compound two waveband fluorescent material product that gets.This material has wide band absorption at ultraviolet region, and maximum absorption band lays respectively at 290nm and 400nm, and fluorescence emission peak is 423nm and 614nm.
Embodiment 2
Take by weighing Dy 2O 30.0839g (2.25 * 10 -4Mol), Eu 2O 30.0088g (2.5 * 10 -5Mol), be dissolved in excessive 6mol 1 -1In the dilute hydrochloric acid,, vapor away unnecessary water and acid, obtain the mixed microcrystalline of Dysprosium trichloride and Europium trichloride, and then be dissolved in about 5ml dehydrated alcohol, obtain solution I with 80 ℃ of left and right sides heating in water bath; Take by weighing TTA0.3333g (1.50 * 10 -3Mol), phen 0.0991g (0.50 * 10 -3Mol), be dissolved in about 5ml dehydrated alcohol, obtain solution II; Under the normal temperature solution I and solution II are mixed, stir and, left standstill under the normal temperature 3-5 days, obtain milky white precipitate with 80 ℃ of left and right sides heating in water bath 5 minutes.To gained precipitation absolute ethanol washing, suction filtration, the dry multi-kernel rare-earth organic coordination compound two waveband fluorescent material product that gets.This material has wide band absorption at ultraviolet region, and maximum absorption band is positioned at 290nm and 398nm, and fluorescence emission peak is 422nm and 614nm.
Embodiment 3
Take by weighing Tb 4O 70.0842g (1.125 * 10 -4Mol), Eu 2O 30.0088g (2.5 * 10 -5Mol), be dissolved in excessive 6mol 1 -1In the dilute hydrochloric acid,, vapor away unnecessary water and acid, obtain the mixed microcrystalline of terbium chloride and Europium trichloride, and then be dissolved in about 5ml dehydrated alcohol, obtain solution I with 80 ℃ of left and right sides heating in water bath; Take by weighing TTA0.3333g (1.50 * 10 -3Mol), phen 0.0991g (0.50 * 10 -3Mol), be dissolved in about 5ml dehydrated alcohol, obtain solution II; Under the normal temperature solution I and solution II are mixed, stir and, left standstill under the normal temperature 3-5 days, obtain milky white precipitate with 80 ℃ of left and right sides heating in water bath 5 minutes.To gained precipitation absolute ethanol washing, suction filtration, the dry multi-kernel rare-earth organic coordination compound two waveband fluorescent material product that gets.This material has wide band absorption at ultraviolet region, and maximum absorption band is positioned at 276nm and 390nm, and fluorescence emission peak is 423nm and 614nm.
Embodiment 4
Get Gd 2O 30.0408g (1.125 * 10 -4Mol), Dy 2O 30.0420g (1.125 * 10 -4Mol), Eu 2O 30.0088g (2.5 * 10 -5Mol), be dissolved in excessive 6mol 1 -1In the hydrochloric acid,, vapor away unnecessary water and acid, obtain the mixed microcrystalline of rare earth chloride, and then be dissolved in about 5ml dehydrated alcohol, obtain solution I with 80 ℃ of left and right sides heating in water bath; Get TTA 0.3333g (1.50 * 10 -3Mol), phen 0.0991g (0.50 * l0 -3Mol), be dissolved in about 5ml dehydrated alcohol, obtain solution II; Under the normal temperature solution I and solution II are mixed, stir and, left standstill under the normal temperature 3-5 days, obtain milky white precipitate with 80 ℃ of left and right sides heating in water bath 5 minutes.To gained precipitation absolute ethanol washing, suction filtration, the dry multi-kernel rare-earth organic coordination compound two waveband fluorescent material product that gets.This material has wide band absorption at ultraviolet region, and maximum absorption band lays respectively at 277nm and 391nm, and fluorescence emission peak is 423nm and 614nm.
Embodiment 5
Take by weighing Dy 2O 30.0420g (1.125 * 10 -4Mol), Tb 4O 70.0421g (5.625 * 10 -5Mol), Eu 2O 30.0088g (2.5 * 10 -5Mol), be dissolved in excessive 6mol 1 -1In the hydrochloric acid,, vapor away unnecessary water and acid, obtain the mixed microcrystalline of rare earth chloride, and then be dissolved in about 5ml dehydrated alcohol, obtain solution I with 80 ℃ of left and right sides heating in water bath; Take by weighing TTA 0.3333g (1.50 * 10 -3Mol), phen 0.0991g (0.50 * 10 -3Mol), be dissolved in about 5ml dehydrated alcohol, obtain solution II; Under the normal temperature solution I and solution II are mixed, stir and, left standstill under the normal temperature 3-5 days, obtain milky white precipitate with 80 ℃ of left and right sides heating in water bath 5 minutes.To gained precipitation absolute ethanol washing, suction filtration, the dry multi-kernel rare-earth organic coordination compound two waveband fluorescent material product that gets.This material has wide band absorption at ultraviolet region, and maximum absorption band lays respectively at 278nm and 393nm, and fluorescence emission peak is 423nm and 614nm.
Description of drawings
Fig. 1 is the solid fluorescence spectrogram of embodiment 1 products obtained therefrom;
Fig. 2 is the solid fluorescence spectrogram of embodiment 2 products obtained therefroms;
Fig. 3 is the solid fluorescence spectrogram of embodiment 3 products obtained therefroms;
Fig. 4 is the solid fluorescence spectrogram of embodiment 4 products obtained therefroms;
The emission spectrogram that Fig. 5 obtains with the ultraviolet excitation of 380nm for embodiment 4 products obtained therefroms;
Fig. 6 is the solid fluorescence spectrogram of embodiment 5 products obtained therefroms;
The emission spectrogram that Fig. 7 obtains with the ultraviolet excitation of 380nm for embodiment 5 products obtained therefroms;
Fig. 8 is the transmission electron microscope picture of fluorescent material.

Claims (3)

1, a kind of two waveband fluorescent material is characterized in that its general formula is: (M xEu 1-x) A yB zIn the formula
M is one or more the arbitrary proportion combination in gadolinium (Gd), yttrium (Y), terbium (Tb), dysprosium (Dy), the lanthanum (La);
A is the beta diketone compounds;
B is for being selected from 2,2 ' dipyridyl, phenanthroline, the containing heteroaromatic compound or be selected from trioctyl-phosphine oxide of oxine, triphenylphosphine oxide, tributylphosphine oxide contain the P=O compound, 0<x<1, y is 2 or 3 or 4, z is 1 or 2.
2, a kind of two waveband fluorescent material according to claim 1 is characterized in that described A is a thenoyltrifluoroacetone, and B is a phenanthroline, and y is 3, and z is 1.
3, the described two waveband Preparation of Fluorescent Material of a kind of claim 1 method is characterized in that
A, get rare earth oxide earlier, be dissolved in dilute hydrochloric acid or the rare nitric acid, heating in water bath vapors away unnecessary water and acid, obtain the mixture of corresponding rare earth chloride or rare earth nitrate, be dissolved in again in the dehydrated alcohol, perhaps get rare earth chloride or rare earth nitrate and be dissolved in the dehydrated alcohol, get solution I;
B, get organic ligand respectively by mol ratio in the general formula, mixed dissolution obtains solution II in dehydrated alcohol;
C, solution I and solution II are mixed, through stirring, heat, leaving standstill, washing and suction filtration, gained precipitate drying and get product.
CNB2004100234180A 2004-01-09 2004-01-09 Dual wave section fluorescent material and its preparaton method Expired - Fee Related CN1315981C (en)

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Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101792508A (en) * 2010-02-10 2010-08-04 黑龙江大学 Unconjugated organic phosphorus, oxide and rare earth coordination polymer as well as preparation method and application thereof
CN105622981A (en) * 2015-01-05 2016-06-01 侯培毅 Preparation method for rare earth fluorescent auxiliary
CN106947462A (en) * 2017-05-11 2017-07-14 长春工业大学 A kind of rare earth organic light conversion agents and preparation method thereof
CN107946412A (en) * 2017-12-25 2018-04-20 青岛大学 A kind of preparation method of rare-earth complex solution and modified solar battery
CN108103609A (en) * 2017-11-16 2018-06-01 北京石油化工学院 The anti-fake composite nano fiber and preparation method for having both phase transition function of double wave length fluorescent
CN110885676A (en) * 2018-09-10 2020-03-17 阜阳师范学院 Double-core double-ligand rare earth composite fluorescent material and preparation method thereof

Cited By (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101792508A (en) * 2010-02-10 2010-08-04 黑龙江大学 Unconjugated organic phosphorus, oxide and rare earth coordination polymer as well as preparation method and application thereof
CN105622981A (en) * 2015-01-05 2016-06-01 侯培毅 Preparation method for rare earth fluorescent auxiliary
CN105622981B (en) * 2015-01-05 2019-02-22 侯培毅 A kind of preparation method of rare-earth fluorescent auxiliary agent
CN106947462A (en) * 2017-05-11 2017-07-14 长春工业大学 A kind of rare earth organic light conversion agents and preparation method thereof
CN108103609A (en) * 2017-11-16 2018-06-01 北京石油化工学院 The anti-fake composite nano fiber and preparation method for having both phase transition function of double wave length fluorescent
CN108103609B (en) * 2017-11-16 2020-06-30 北京石油化工学院 Dual-wavelength fluorescent anti-counterfeiting composite nanofiber with phase change function and preparation method thereof
CN107946412A (en) * 2017-12-25 2018-04-20 青岛大学 A kind of preparation method of rare-earth complex solution and modified solar battery
CN110885676A (en) * 2018-09-10 2020-03-17 阜阳师范学院 Double-core double-ligand rare earth composite fluorescent material and preparation method thereof

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