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Barium stannate composite silicon oxide aerogel powder and preparation method thereof

A technology of silica airgel and composite airgel, which is applied in the fields of airgel preparation, chemical instruments and methods, colloid chemistry, etc., and can solve the problems of large grain size and few research reports on nanocrystalline perovskite materials , to achieve the effect of stability and repeatability guarantee

Active Publication Date: 2020-08-11
SHANGHAI INST OF CERAMIC CHEM & TECH CHINESE ACAD OF SCI
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Perovskite materials prepared by conventional methods generally require a high-temperature sintering process, which makes the grain size large, ranging from tens of nanometers to several microns. Therefore, controlling the growth of grains and preparing uniformly distributed nanocrystals are currently the research problem
However, there are very few research reports on nanocrystalline perovskite materials.
In addition, there are few reports on the research on nanoporous structure perovskite materials.

Method used

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  • Barium stannate composite silicon oxide aerogel powder and preparation method thereof
  • Barium stannate composite silicon oxide aerogel powder and preparation method thereof
  • Barium stannate composite silicon oxide aerogel powder and preparation method thereof

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preparation example Construction

[0043] The application relates to an alkaline earth metal stannate composite airgel-barium stannate composite silicon oxide airgel and a preparation method thereof. The barium stannate composite silicon oxide airgel uses the silicon oxide airgel as a hard template, and the barium stannate nanoparticles are coated nanoparticles. Barium stannate nanoparticles can be uniformly distributed in the pores of silica airgel. Its preparation method can be peroxide co-precursor-sol-gel method, which can specifically include: using water-soluble tin salt, water-soluble barium salt, and chelating agent as raw materials, and using aqueous peroxide solution as solvent to prepare barium stannate precursor Mix it with the acidified silicic acid solution evenly, then adjust the pH of the solution to obtain a composite wet gel, then add a peroxide precipitant to prepare the barium stannate precursor powder, and then use an organic solvent with low surface tension Perform solvent replacement and...

Embodiment 1

[0062] Preparation of pure silica airgel

[0063] (1) Activation of cation exchange resin. Take 8.8ml of strongly acidic styrene cation exchange resin, wash it three times with deionized water, then add three times the volume of deionized water and stir at room temperature for 30 minutes to fully swell. Take 4ml of chemically pure concentrated hydrochloric acid, dissolve it in 26ml of deionized water at room temperature, and prepare 30ml of dilute hydrochloric acid with a concentration of 4-5%. Add the swollen cation exchange resin to dilute hydrochloric acid, stir and acidify for 2 hours, filter, wash, and set aside;

[0064] (2) Preparation of wet gel. Take 2ml industrial water glass (Na 2 SiO 3 ) was dissolved in 8ml deionized water at room temperature and diluted. Add the diluted water glass solution to the cation exchange resin in (1) to acidify for 20 minutes, then take out the supernatant, which is a silicic acid solution. Get 0.0235g hexamethylenetetramine (C 6 ...

Embodiment 2

[0074] Preparation of 93.5% SiO 2 +6.5% BaSnO 3 composite airgel

[0075] (1) Preparation of precursor solution. Take successively 0.02714g of barium chloride dihydrate (BaCl 2 2H 2 O), 0.039g of tin tetrachloride pentahydrate (SnCl 4 ·5H 2 O) Dissolve in 2ml 30% hydrogen peroxide (H 2 o 2 ) aqueous solution, then add citric acid monohydrate (C 6 h 8 o 7 ·H 2 O), after stirring for 15 minutes, a clear precursor solution was obtained;

[0076] (2) Preparation of precursor wet gel. The precursor solution in (1) is mixed with the silicic acid solution in embodiment 1, gets 0.0235g hexamethylenetetramine (C 6 h 12 N 4) (the molar ratio of hexamethylenetetramine to silicon is 0.02) was dissolved in the mixed solution, the pH was adjusted to neutral, and it was placed in an oven at 70° C. for gelation. The gelled gel was aged in an oven at 50°C for 12 hours, then 1 mol / L ammonia solution was added dropwise until the pH value was 10, and finally reacted for 120 minute...

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Abstract

The invention provides barium stannate composite silicon oxide aerogel powder and a preparation method thereof. The composition of the composite aerogel is xSiO2 + (1-x) BaSnO3, x is more than 0 and less than 1, and the composite aerogel comprises silicon oxide aerogel and barium stannate nanoparticles uniformly distributed in the silicon oxide aerogel. Silicon oxide aerogel is used as a hard template, barium stannate nanoparticles are uniformly distributed in the silicon oxide aerogel and have the nano-pore channel structure so that agglomeration of barium stannate can be prevented, and the properties such as small-size effect and surface / interface effect of nanocrystalline barium stannate can be fully exerted.

Description

technical field [0001] The invention relates to an alkaline earth metal stannate composite airgel-barium stannate composite silicon oxide airgel powder and a preparation method thereof, belonging to the technical field of nanoporous perovskite materials. Background technique [0002] Airgel is a kind of lightweight material with nanoporous structure, which has the characteristics of low density, high porosity, large specific surface area and excellent thermal insulation performance. It is widely used in catalyst carrier, high temperature resistance and heat insulation, efficient adsorption, solar energy Batteries and other fields. Airgel has a large number of nanopores, and its functional properties can be improved by combining it with functional materials, such as chitosan, nanofibers, graphene, simple carbon, metal platinum, iron oxide, etc., which are respectively applied to heavy metal ions Adsorption, infrared sensing materials, double super insulators, lithium-ion bat...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): B01J13/00
CPCB01J13/0091
Inventor 高相东史天泉杨京南
Owner SHANGHAI INST OF CERAMIC CHEM & TECH CHINESE ACAD OF SCI
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