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金属/非金属元素掺杂提升原子级分散碳基催化剂的氧还原性能 被引量:1
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作者 孟鹏飞 张笑容 +1 位作者 廖世军 邓怡杰 《化学进展》 SCIE CAS CSCD 北大核心 2022年第10期2190-2201,共12页
原子级别分散的过渡金属和氮共掺杂碳基催化剂(M-N_(x)-C)具有反应活性好、选择性高、制备容易等优点,被认为是最有可能取代价格昂贵的铂催化剂用作燃料电池阴极的一类非贵金属催化剂。然而,该类催化剂在阴极侧氧还原反应过程中存在活... 原子级别分散的过渡金属和氮共掺杂碳基催化剂(M-N_(x)-C)具有反应活性好、选择性高、制备容易等优点,被认为是最有可能取代价格昂贵的铂催化剂用作燃料电池阴极的一类非贵金属催化剂。然而,该类催化剂在阴极侧氧还原反应过程中存在活性位点密度较低、耐久性不足的问题制约了其在燃料电池中的实际应用。研究表明,通过多种金属/非金属元素的掺杂调控活性位点的电子结构与空间构型可显著提升M-N_(x)-C催化剂的氧还原活性和稳定性,已成为掺杂碳基催化剂领域的热门研究课题。本文综述了近年来国内外在多种金属/非金属元素掺杂提升M-N_(x)-C碳基催化剂性能方面的主要研究工作,包括金属元素掺杂、非金属元素掺杂等研究。文章进一步总结和指出了M-N_(x)-C碳基催化剂面临的问题及挑战,并对其发展前景和未来研究方向进行了展望。 展开更多
关键词 非铂催化剂 碳基催化剂 氧还原 共掺杂 单原子催化剂
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Engineering the electronic and strained interface for high activity of PdMcore@Ptmonolayer electrocatalysts for oxygen reduction reaction 被引量:8
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作者 Haoxiong Nan Ya-Qiong Su +6 位作者 Cheng Tang Rui Cao Dong Li Jia Yu Quanbing Liu Yijie Deng Xinlong Tian 《Science Bulletin》 SCIE EI CAS CSCD 2020年第16期1396-1404,M0004,共10页
Alloyed nanoparticles with core-shell structures provide a favorable model to modulate interfacial interaction and surface structures at the atomic level,which is important for designing electrocatalysts with high act... Alloyed nanoparticles with core-shell structures provide a favorable model to modulate interfacial interaction and surface structures at the atomic level,which is important for designing electrocatalysts with high activity and durability.Herein,core-shell structured Pd3M@Pt/C nanoparticles with binary PdM alloy cores(M=Fe,Ni,and Co)and a monolayer Pt shell were successfully synthesized with diverse interfaces.Among these,Pd3Fe@Pt/C exhibited the best oxygen reduction reaction catalytic performance,roughly 5.4 times more than that of the commercial Pt/C catalyst used as reference.The significantly enhanced activity is attributed to the combined effects of strain engineering,interfacial electron transfer,and improved Pt utilization.Density functional theory simulations and extended X-ray absorption fine structure analysis revealed that engineering the alloy core with moderate lattice mismatch and alloy composition(Pd3Fe)optimizes the surface oxygen adsorption energy,thereby rendering excellent electrocatalytic activity.Future researches may use this study as a guide on the construction of highly effective core-shell electrocatalysts for various energy conversions and other applications. 展开更多
关键词 Oxygen reduction reaction Fuel cells Diverse interfaces Pt monolayer Interface engineering
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