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首页> 外文期刊>International journal of hydrogen energy >Reusable water oxidation catalyst with dual active center for enhanced water oxidation: Iridium oxide nanoparticles immobilized on monodisperse-porous Mn_5O_8 microspheres
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Reusable water oxidation catalyst with dual active center for enhanced water oxidation: Iridium oxide nanoparticles immobilized on monodisperse-porous Mn_5O_8 microspheres

机译:具有双活性中心的可重复使用的水氧化催化剂,用于增强水氧化:氧化铱纳米粒子固定在单分散 - 多孔Mn_5O_8微球上

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摘要

A reusable catalyst with dual active center for chemical water oxidation is synthesized for the first time by immobilization of iridium oxide nanoparticles (IrO2 NPs) on monodisperseporous manganese oxide microspheres acting both catalytic active center and support. Individual catalytic activity of manganese oxide microspheres is explained by multiple oxidation states of manganese which are capable of forming oxidative oxygen species. Monodisperse-porous microspheres in the form of Mn5O8, MnO2 and Mn2O3 are used for synthesis of different catalysts and the highest activity in water oxidation is observed with the catalyst synthesized using Mn5O8 microspheres. The catalytic activity is correlated with the total Mn(II) and Mn(III) percentage of manganese oxide type selected for composite catalyst. The oxygen evolution up to 244 mmol is achieved in 30 min with the catalyst synthesized using Mn5O8 microspheres. Maximum TON and TOF numbers are obtained as 298 and 557 h(-1) with excellent reusability. (C) 2021 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:通过将氧化铱纳米颗粒(IRO2 NPS)固定在催化活性中心和载体上的单方法上的氧化铱纳米粒子(IRO2 NPS)上的第一时间合成具有双活性化学水氧化的可重复使用的催化剂。锰氧化物微球的个体催化活性由能够形成氧化氧物种的多重氧化态来解释。 Mn5O8,MnO 2和Mn2O3形式的单分散 - 多孔微球用于合成不同催化剂,并用使用MN5O8微球合成的催化剂观察到水氧化的最高活性。催化活性与选自复合催化剂的锰氧化物型的总Mn(II)和Mn(III)百分比相关。在30分钟内通过使用MN5O8微球合成的催化剂在30分钟内实现高达244mmol的氧气蒸变。最大吨和TOF编号获得为298和557小时(-1),具有优异的可重用性。 (c)2021氢能出版物LLC。 elsevier有限公司出版。保留所有权利。

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