Low-temperature solvent hot preparation method of indium tin oxide monodisperse nano powder
An indium tin oxide single and nano-powder technology, applied in the fields of nanostructure manufacturing, chemical instruments and methods, nanotechnology, etc., can solve the problems of product particle agglomeration, complex process flow, unfavorable application, etc., and achieves safe operation and simple equipment. , the effect of less pollution
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Embodiment 1
[0025] (1) put 38g InCl 3 4H 2 O and 4.65 g SnCl 4 ·5H 2 O was first dissolved with 100mL hydrochloric acid to obtain a mixed solution;
[0026] (2) Add 4L ethylene glycol to the mixed solution obtained in step (1) as a solvent, and mix well;
[0027] (3) Under stirring, slowly add NH with a concentration of 25% by mass 3 ·H 2 0, adjust the pH value to 7.0, stir well, obtain the ethylene glycol suspension of indium tin hydroxide;
[0028] (4) Move the ethylene glycol suspension of indium tin hydroxide obtained in step (3) into a reaction kettle, and react for 2 hours at 200°C; After vacuum drying for 24 hours, the indium tin oxide monodisperse nano-powder product is obtained, which contains tin oxide with a concentration of 10% by mass. The prepared nano-ITO powder is observed under a scanning electron microscope with an average particle size of <100nm, and the particle size range measured by a nanometer particle size analyzer is 10-200nm.
Embodiment 2
[0030] (1) Put 49.5g In(NO 3 ) 3 4H 2 O, and 6.0g Sn(NO 3 ) 4 ·5H 2 O was first dissolved with 100mL nitric acid to obtain a mixed solution;
[0031] (2) Add 10L ethylene glycol to the mixed solution obtained in step (1) as a solvent, and mix well;
[0032] (3) In a stirring state, slowly drop sodium hydroxide to adjust the pH value to 7.0, and stir evenly to obtain an ethylene glycol suspension of indium tin hydroxide;
[0033] (4) Move the ethylene glycol suspension of indium tin hydroxide obtained in step (3) into a reaction kettle, and react for 4 hours at 200°C; After vacuum drying for 48 hours, the indium tin oxide monodisperse nano-powder product is obtained, which contains tin oxide with a concentration of 10% by mass.
Embodiment 3
[0035] (1) Dissolve 23.16g metal indium and 5.51g metal tin with 100mL sulfuric acid to obtain a mixed solution;
[0036](2) Add 2L ethylene glycol to the mixed solution obtained in step (1) as a solvent, and mix well;
[0037] (3) In a stirring state, adjust the pH value to 11.0 with potassium hydroxide, and stir evenly to obtain an ethylene glycol suspension of indium tin hydroxide;
[0038] (4) Move the ethylene glycol suspension of indium tin hydroxide obtained in step (3) into a reaction kettle, and react for 20 hours at 180°C; After vacuum drying for 48 hours, the indium tin oxide monodisperse nano-powder product is obtained, which contains tin oxide with a concentration of 20% by mass.
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