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Preparation of meso-porous TiO2 gels and their characterization

机译:介孔TiO2凝胶的制备及其表征

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摘要

Mesoporous TiO2 gels, which are attractive for their potential application to photocatalysts and electrodes for wet solar cells, have been prepared by a newly developed method and their microstructure was investigated. Monolithic gels were obtained by hydrolysis of Ti(n-C4H9O)(4) in an ethanol/ethylacetoacetate solution. The wet gels were aged and dried after immersion in an ethanol solution of surfactants, cetyltrimethylammonium chloride (CTAC) or benzyltrimethylammonium chloride (BTAC) (CTAC- or BTAC-modified xerogels). The organic substances in the gels can be removed by heating up to 500 degreesC in air. After calcination at 600 degreesC, emanation thermal analysis (ETA) and N-2-adsorption measurements were made. The BET surface area, the pore volume and the pore size increased as a result of surfactant modification. The most probable purl radius of the xerogel, BTAC-modified gels and CTAC-modified gel was 2.4, 2.8 and 5.0 nm, respectively. The pore size distribution of mesoporous TiO2 gels depends on the size of surfactant micelles. The microstructure of mesoporous gels can be characterized by ETA. The Rn-220-release rate: of the samples labelled with Th-228 and Ra-224 during heating was xerogel < BTAC-modified gel < CTAC-modified gel. The Rn-220 release rate depends on the pore size of the gels as well as the surface areas. (C) 2001 Elsevier Science B.V. All rights reserved. [References: 12]
机译:通过一种新开发的方法制备了介孔TiO2凝胶,由于其潜在的应用前景而吸引了湿式太阳能电池的光催化剂和电极,并对其微观结构进行了研究。通过在乙醇/乙酰乙酸乙酯溶液中水解Ti(n-C4H9O)(4)获得单块凝胶。将湿凝胶老化并浸入表面活性剂,十六烷基三甲基氯化铵(CTAC)或苄基三甲基氯化铵(BTAC)的乙醇溶液(CTAC或BTAC改性干凝胶)中并干燥。凝胶中的有机物质可以通过在空气中加热到500摄氏度来去除。在600℃下煅烧后,进行发射热分析(ETA)和N-2-吸附测量。由于表面活性剂的改性,BET表面积,孔体积和孔径增加。干凝胶,BTAC修饰的凝胶和CTAC修饰的凝胶的最可能的pur半径分别为2.4、2.8和5.0 nm。介孔TiO2凝胶的孔径分布取决于表面活性剂胶束的大小。中孔凝胶的微观结构可以通过ETA来表征。 Rn-220释放速率:加热期间用Th-228和Ra-224标记的样品的干凝胶

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