催化作用
过程(计算)
纳米技术
实现(概率)
质子交换膜燃料电池
氧还原反应
选择性
领域(数学)
化学
燃料电池
联轴节(管道)
稀缺
材料科学
吞吐量
还原(数学)
电子结构
密度泛函理论
化学物理
组合化学
计算机科学
氧气
极限(数学)
质子
鉴定(生物学)
电催化剂
耐久性
多相催化
反应机理
反应条件
作者
Jirong Bai,Suyi Wang,Fangyu Ren,Yuebin Lian,Mei Xiang,Jintao Zhang,Yaoyao Deng
摘要
The oxygen reduction reaction (ORR) plays a crucial role in the field of energy such as in proton exchange membrane fuel cells (PEMFCs) and zinc-air batteries (ZABs), but the process is kinetically slow and requires efficient catalysts. The high cost and scarcity of Pt-based catalysts limit their practical applications despite their superior performance. Researchers are therefore committed to reducing the use of Pt or developing highly active alternative non-precious metal-based catalysts to reduce costs. Collective effect catalysts (CECs) combine the advantages of single atoms and atomic clusters/nanoparticles and can significantly improve the activity, selectivity and durability of the catalyst by precisely controlling their composition and geometric and electronic structure. The enhanced intrinsic activity of CECs contributes to the realization of efficient and low-cost electrocatalysis, which is receiving increasing attention. This article reviews the research progress of CECs for electrocatalytic ORR, including their structural features, identification methods, and synergistic effects, and summarizes their representative application research progress in ZABs and PEMFCs. Finally, the article looks forward to future developments to provide new insights for the design of advanced catalysts.
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