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纳米级氧化锰/团聚倍半硅氧烷复合材料作为一种优良的水氧化催化剂。

Nano-sized Mn oxide/agglomerated silsesquioxane composite as a good catalyst for water oxidation.

作者信息

Najafpour Mohammad Mahdi, Madadkhani Sepideh

机构信息

Department of Chemistry, Institute for Advanced Studies in Basic Sciences (IASBS), Zanjan, 45137-66731, Iran.

Center of Climate Change and Global Warming, Institute for Advanced Studies in Basic Sciences (IASBS), Zanjan, 45137-66731, Iran.

出版信息

Photosynth Res. 2016 Dec;130(1-3):73-81. doi: 10.1007/s11120-016-0225-2. Epub 2016 Feb 5.

Abstract

Water splitting to hydrogen and oxygen is an important reaction to store sustainable energies, and water oxidation is identified as the bottleneck for water splitting because it requires the high activation energy to perform. Herein a nano-sized Mn oxide/agglomerated silsesquioxane composite was used to synthesize an efficient catalyst for water oxidation. The composite was synthesized by a straightforward and simple procedure and characterized by scanning electron microscopy, transmission electron microscopy, Fourier transform infrared spectroscopy, Raman spectroscopy, dynamic light scattering, X-ray diffraction spectrometry, and electrochemical methods. Silsesquioxane causes good dispersion of Mn in the composite. The water-oxidizing activity of this composite was studied in the presence of cerium(IV) ammonium nitrate. The composite at the best calcination temperature (300 °C) shows a turnover frequency 0.3 (mmol O/mol Mn.s). Regarding the low-cost, environmentally friendly precursors, simple synthesis, and efficiency for water oxidation, the composite is a promising catalyst that can be used in artificial photosynthetic systems for water splitting. We used Agglomerated silsesquioxane as a support for nano-sized Mn oxide to synthesize a good water-oxidizing catalyst.

摘要

水分解为氢气和氧气是储存可持续能源的重要反应,而水氧化被认为是水分解的瓶颈,因为它需要高活化能才能进行。在此,一种纳米级氧化锰/团聚倍半硅氧烷复合材料被用于合成一种高效的水氧化催化剂。该复合材料通过一种直接且简单的程序合成,并通过扫描电子显微镜、透射电子显微镜、傅里叶变换红外光谱、拉曼光谱、动态光散射、X射线衍射光谱和电化学方法进行表征。倍半硅氧烷使锰在复合材料中具有良好的分散性。在硝酸铈铵存在的情况下研究了该复合材料的水氧化活性。在最佳煅烧温度(300°C)下的复合材料显示出周转频率为0.3(mmol O/mol Mn·s)。鉴于其低成本、环境友好的前驱体、简单的合成方法以及水氧化效率,该复合材料是一种有前途的催化剂,可用于人工光合系统中的水分解。我们使用团聚倍半硅氧烷作为纳米级氧化锰的载体来合成一种良好的水氧化催化剂。

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