首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Mesoporous titania-based H3PW_(12)O_(40) composite by a block copolymer surfactant-assisted templating route: Preparation, characterization, and heterogeneous photocatalytic properties
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Mesoporous titania-based H3PW_(12)O_(40) composite by a block copolymer surfactant-assisted templating route: Preparation, characterization, and heterogeneous photocatalytic properties

机译:嵌段共聚物表面活性剂辅助模板法制备介孔二氧化钛基H3PW_(12)O_(40)复合材料:制备,表征和多相光催化性能

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摘要

Mesoporous H3PW_(12)O_(40)/TiO2 composite with H3PW_(12)O_(40) loading from 32 to 16.6% was prepared by the combination of sol-gel chemistry, templated self-assembly, and solvothermal treatment in the presence of a triblock copolymer surfactant. At relatively low solvothermal treatment temperature (80 to 120 °C), as-prepared composite exhibited an anatase phase structure. Bulk and surface sensitive probe testing results indicated that the primary Keggin structure remained intact after formation of the composite, and strong interaction between the Keggin unit and TiO2 network existed in the composite. Nitrogen gas porosimetry, low-angle XRD, and TEM testing results suggested the composite exhibited well-distributed three-dimensionally interconnected pore structure with pore diameter of 33-4.0 nm, BET surface area of 151.5-195.1 m~2 g~(-1), and pore volume of 0.17-0.26 cm~3 g~(-1). The composite was used as a heterogeneous photocatalyst to degradation of dyes with azoic (methyl orange), heteropolyaromatic (methylene blue), triarylmethane (crystal violet), and fluorescent (rhodamine B) structures; at the same time, adsorption behaviors of dyes on mesoporous H3FW_(12)O_(40)/TiO2 composite are tested. Finally, photodegradation pathway of dye crystal violet over mesoporous H3PW_(12)O_(40)/TiO2 was tentatively put forward based on the identified intermediates generated during the photocatalytic degradation process. The results shown in Fig. 9 demonstrate that PW_(12)/TiO2 with higher H3PW_(12)O_(40) loading has higher photocatalytic activity.
机译:H3PW_(12)O_(40)负载量为32%至16.6%的介孔H3PW_(12)O_(40)/ TiO2复合材料是通过溶胶-凝胶化学,模板化自组装和溶剂热处理在以下条件下制备的:三嵌段共聚物表面活性剂。在相对较低的溶剂热处理温度(80至120°C)下,制备的复合材料表现出锐钛矿相结构。大量和表面敏感的探针测试结果表明,复合材料形成后,基本的Keggin结构保持完整,复合材料中存在Keggin单元与TiO2网络之间的强相互作用。氮气孔隙率法,低角XRD和TEM测试结果表明该复合材料具有良好分布的三维互连孔结构,孔径为33-4.0 nm,BET表面积为151.5-195.1 m〜2 g〜(-1) ),孔体积为0.17-0.26 cm〜3 g〜(-1)。该复合物被用作多相光催化剂,以降解具有偶氮(甲基橙),杂多芳族(亚甲基蓝),三芳基甲烷(结晶紫)和荧光(若丹明B)结构的染料。同时,测试了染料在介孔H3FW_(12)O_(40)/ TiO2复合材料上的吸附行为。最后,根据在光催化降解过程中产生的中间体,初步提出了染料晶体紫在介孔H3PW_(12)O_(40)/ TiO2上的光降解途径。图9所示的结果表明,具有较高的H 3 PW_(12)O_(40)负载的PW_(12)/ TiO 2具有较高的光催化活性。

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