Low-loading Pt nanoparticles embedded on Ni, N-doped carbon as superior electrocatalysts for oxygen reduction
العنوان: | Low-loading Pt nanoparticles embedded on Ni, N-doped carbon as superior electrocatalysts for oxygen reduction |
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المؤلفون: | Xinliang Wang, Feng Wang, Zhengping Zhang, Shaoxuan Yang, Yihuan Yu, Meiling Dou |
المصدر: | Catalysis Science & Technology. 10:65-69 |
بيانات النشر: | Royal Society of Chemistry (RSC), 2020. |
سنة النشر: | 2020 |
مصطلحات موضوعية: | Materials science, Chemical engineering, Doped carbon, Energy transformation, Pt nanoparticles, Electrochemistry, Electrocatalyst, Atomic units, Nanoscopic scale, Catalysis |
الوصف: | 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. |
تدمد: | 2044-4761 2044-4753 |
URL الوصول: | https://explore.openaire.eu/search/publication?articleId=doi_________::f03eee7863f6d4dcb6c0c30271a8a07d https://doi.org/10.1039/c9cy01654f |
حقوق: | CLOSED |
رقم الأكسشن: | edsair.doi...........f03eee7863f6d4dcb6c0c30271a8a07d |
قاعدة البيانات: | OpenAIRE |
تدمد: | 20444761 20444753 |
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