基于{PMo12O40@Mo72Fe30}n的软金属氧酸盐光化学水氧化

IF 2.4 Q3 MATERIALS SCIENCE, MULTIDISCIPLINARY
Santu Das, Soumyajit Roy
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引用次数: 4

摘要

寻找一种能够以低成本生产清洁能源的替代能源是我们时代的主要关切之一。将光能转化为化学能是朝着这个方向迈出的关键一步。有鉴于此,光化学水氧化产生氧气起着至关重要的作用。在本文中,我们合成了一种软的含氧金属盐{PMo12O40@Mo72Fe30}n(1) 由其众所周知的前体多金属氧酸盐组分[Muller等人,Chem.Commun.1657(2001)]制备。众所周知,在催化方面,高表面积、多相化的可能性、可回收性使软金属氧化合物(SOMs)作为催化材料具有吸引力。在这里,我们利用SOM的这些优势。SOM基材料作为光化学水氧化反应的活性催化剂,最大周转数为20256,周转频率为24.11min−1。催化剂材料在光化学反应条件下是稳定的,因此可以重复用于多个光催化水氧化反应循环。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Photochemical Water Oxidation Using {PMo12O40@Mo72Fe30}n Based Soft Oxometalate
Finding an alternative energy resource which can produce clean energy at a low cost is one of the major concerns of our times. The conversion of light energy into chemical energy is one key step forward in the direction. With that end in view photochemical water oxidation to produce oxygen plays a crucial role. In the present paper we have synthesized a soft oxometalate {PMo12O40@Mo72Fe30}n(1) from its well-known precursor polyoxometalate constituent [Muller et al., Chem. Commun. 1, 657 (2001)]. It is known that in the matter of catalysis, high surface area, possibility of heterogenization, recoverability makes soft oxometalates (SOMs) attractive as catalytic materials. Here we exploit such advantages of SOMs. The SOM based material acts as an active catalyst for photochemical water oxidation reaction with a maximum turnover number of 20256 and turnover frequency of 24.11min−1. The catalyst material is stable under photochemical reaction conditions and therefore can be reused for multiple photo catalytic water oxidation reaction cycles.
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来源期刊
Journal of Molecular and Engineering Materials
Journal of Molecular and Engineering Materials MATERIALS SCIENCE, MULTIDISCIPLINARY-
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