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Low-loading Pt nanoparticles embedded on Ni, N-doped carbon as superior electrocatalysts for oxygen reduction

机译:给定Pt纳米粒子嵌入在倪,n型碳作为electrocatalysts优越氧气减少

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摘要

As one of the efficient and classic nanoscale catalysts, Pt nanoparticles play predominant roles in multiple energy conversion systems, especially for electrochemical devices involving the oxygen reduction reaction (ORR). It is important to develop a scalable method for synthesis of more efficient Pt-based electrocatalysts with higher activity and stability. In this work, a low-loading Pt-based electrocatalyst (8.0 wt%) is fabricated by the galvanic replacement reaction, presenting well-dispersed Pt nanoparticles adjacent to atomic Ni-N-C complexes (Pt@NiNC). Due to the synergetic effect associated with the nanoscale/atomic scale joint active sites and the strong metal-support interaction, the resulting Pt@NiNC hybrid exhibits better ORR performance and higher mass activity than the benchmark Pt/C, as well as enhanced electrochemical stability. This research not only opens a new route to develop heterogeneous catalysts with multi-scale joint sites but also provides bright prospects for high-performance and low-cost energy conversion and storage.
机译:作为一个高效和经典的纳米级催化剂,Pt纳米粒子主要玩角色在多个能量转换系统,特别是对涉及电化学设备氧还原反应(ORR)。开发一个可伸缩的方法很重要合成Pt-based更有效率electrocatalysts和较高的活动稳定。electrocatalyst (8.0 wt %)是由制作的电置换反应,呈现的说法Pt纳米粒子相邻原子Ni-N-C复合物(Pt@NiNC)。与协同作用的影响纳米/联合活动网站和原子尺度强烈的金属支架相互作用,由此产生的Pt@NiNC混合展览或者性能更好和质量活动高于基准Pt / C,以及增强电化学稳定性。本研究不仅开辟了新的途径发展与多尺度多相催化剂联合网站还提供了光明的前景高性能和低成本的能量转换和存储。

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