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首页> 外文期刊>Current opinion in solid state & materials science >Local structures and photocatalytic reactivities of the titanium oxide and chromium oxide species incorporated within micro- and mesoporous zeolite materials: XAFS and photoluminescence studies
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Local structures and photocatalytic reactivities of the titanium oxide and chromium oxide species incorporated within micro- and mesoporous zeolite materials: XAFS and photoluminescence studies

机译:微孔和中孔沸石材料中结合的氧化钛和氧化铬物种的局部结构和光催化反应性:XAFS和光致发光研究

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摘要

Transition metal oxides (titanium, chromium oxides) photocatalysts can be designed within the cavities and frameworks of various zeolites and mesoporous molecular sieves by ion-exchange and hydrothermal synthesis. A combination of in situ XAFS and photoluminescence spectroscopic techniques has revealed that these transition metal oxide species incorporated within zeolites exist in a highly dispersed state with a tetrahedral coordination and such a high dispersion state allows them to act as efficient photocatalysts for various photocatalytic reactions. These results clearly suggest that the utilization of zeolites and mesoporous materials is one of the most promising approaches to design and development of highly efficient and effective photocatalysts with well-defined local structures at the molecular level.
机译:过渡金属氧化物(钛,氧化铬)光催化剂可通过离子交换和水热合成在各种沸石和介孔分子筛的腔体和骨架内进行设计。原位XAFS和光致发光光谱技术的结合表明,沸石中掺入的这些过渡金属氧化物物种以四面体配位的高度分散状态存在,如此高的分散状态使它们可用作各种光催化反应的有效光催化剂。这些结果清楚地表明,利用沸石和中孔材料是设计和开发在分子水平上具有明确局部结构的高效和有效光催化剂的最有前途的方法之一。

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