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Manganese oxides treated with organic compounds as catalysts for water oxidation reaction

机译:用有机化合物处理的锰氧化物作为水氧化反应的催化剂

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Manganese oxides of different crystalline structures: alpha-MnO2, delta-MnO2, alpha,gamma-MnO2 and Mn2O3; were treated with the organic compounds picolinic acid, ethylenediamine and pyridine; and were applied as catalysts in the chemical water oxidation reaction using Ce(IV) ammonium nitrate as sacrificial oxidant. The treatment led to modifications in the oxides properties, such as reduction of the particle size, increase of surface area and partial reduction of Mn4+ to Mn3+ for the Mn(IV) oxides, or of Mn3+ to Mn2+ for Mn2O3, because of favored interactions of the organic molecules with the lattice planes with higher d spacing. Oxygen evolution reaction (OER) tests showed the superior catalytic activity of the treated Mn(IV) oxides, for instance alpha,gamma-MnO2-en presented TOF five times higher than pure alpha,gamma-MnO2. The increase in surface area as well as the higher Mn3+ content caused by the treatment of the Mn(IV) oxides were correlated with the improvement in the OER catalytic activity. (C) 2021 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:不同晶体结构的氧化锰:α-MnO2,Delta-MnO2,α,γ-mnO2和Mn2O3;用有机化合物普罗辛酸,乙二胺和吡啶处理;并且使用Ce(IV)硝酸铵作为牺牲氧化剂的化学水氧化反应中的催化剂。该处理导致氧化物性质的修饰,例如降低粒度,表面积的增加和Mn4 +至Mn3 +的Mn4 +至Mn3 +的部分还原,或Mn3 +至Mn2 +用于Mn2O3,因为有利的相互作用具有较高D间距的晶格平面的有机分子。氧气进化反应(oer)测试显示了处理的Mn(iv)氧化物的优异催化活性,例如α-mnO 2-en呈现比纯α,γ-mnO2高的5倍。表面积的增加以及由Mn(IV)氧化物处理引起的较高的Mn3 +含量与伊尔催化活性的改善相关。 (c)2021氢能量出版物LLC。 elsevier有限公司出版。保留所有权利。

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