Synthesis of ordered mesoporous crystalline carbon-anatase composites with high titania contents |
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Authors: | Qian Xufang Wan Ying Wen Yanli Jia Nengqin Li Hexing Zhao Dongyuan |
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Affiliation: | Department of Chemistry, Shanghai Normal University, Shanghai 200234, People's Republic of China. |
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Abstract: | A direct-triblock-copolymer templating method is demonstrated to synthesize ordered mesoporous crystalline C-TiO(2) (MCT) composites using phenolic resins and acid-base pairs [acidic TiCl(4) and basic counterpart Ti(OC(4)H(7))(4)] as carbon and titanium sources, respectively. The composites possess highly crystalline anatase pore walls that are "glued" by amorphous carbon, ordered mesostructure, high surface areas (approximately 200 m(2)/g), and large pore volumes (approximately 0.15 cm(3)/g). The titania content is as high as 87 wt%. MCT composite favors the immobilization of proteins and enhances the electrocatalytic properties in relation to the reduction of hydrogen peroxide. |
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