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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Pt nanoparticles embedded metal-organic framework nanosheets: A synergistic strategy towards bifunctional oxygen electrocatalysis
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Pt nanoparticles embedded metal-organic framework nanosheets: A synergistic strategy towards bifunctional oxygen electrocatalysis

机译:PT纳米颗粒嵌入式金属 - 有机框架纳米液:双官能氧电常用的协同策略

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摘要

To meet the increasing demands for highly active electrocatalysts towards oxygen reduction reaction (ORR) and oxygen evolution reaction (OER), here in this work, a new strategy of synergistic nano-architecture design based on Platinum nanoparticles (Pt NPs) and ultrathin two-dimensional (2D) metal-organic frameworks (MOFs) is developed for bifunctional electrochemical catalysts. Compared with commercial PVC and Ru02 catalysts, remarkable enhancements in activity and durability of both oxygen reduction and oxygen evolution reactions are achieved on our PtNPs@MOFs composite materials, with one of the lowest over-potential gaps (Eg p) of 665 mV that has ever been reported. The tests on the assembled Zn-air batteries have revealed promising electrocatalytic performance and practical advantage of our new materials as air cathode catalyst. Both experimental results and theoretical study have confirmed the synergistic effect between Pt NPs and MOF nanosheets through a "win-win" electron structural modification, demonstrating the effectiveness of our strategy in developing effective bifunctional oxygen electrocatalysts for various types of electrochemical devices.
机译:为了满足对高活性电催化剂对氧还原反应(ORR)和氧气进化反应(OER)的越来越多的需求,在此工作中,基于铂纳米粒子(PT NPS)和超薄的协同纳米建筑设计的新策略。尺寸(2D)金属 - 有机框架(MOFS)是为双官能电化学催化剂开发的。与商业PVC和RU02催化剂相比,在我们的PTNPS @ MOFS复合材料上达到了氧气减少和氧气进化反应的活动和耐久性的显着增强,其中665 mV的最低过潜能间隙(例如P)之一曾经报道过。在组装的Zn-Air电池上的测试揭示了我们作为空气阴极催化剂的新材料的有前途的电催化性能和实际优势。通过“双赢”电子结构改性,实验结果和理论研究既通过“双赢”电子结构改性就确认了Pt NPS和MOF纳米晶片之间的协同效应,证明了我们对各种类型的电化学器件开发有效双官能氧电催化剂的策略的有效性。

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