Polarized Ni0-Niδ+ Catalysts Enable Asymmetric C–C Coupling for Long-Chain Hydrocarbons in Electrochemical CO2 Reduction

催化作用 电化学 材料科学 联轴节(管道) 分析化学(期刊) 化学 无机化学 物理化学 电极 有机化学 冶金
作者
Haowen Ding,Wenwei Cai,Xiaoling Yang,Yu Zhang,Shunning Li,Feng Pan,Shisheng Zheng
出处
期刊:ACS Catalysis [American Chemical Society]
卷期号:15 (11): 9793-9803 被引量:8
标识
DOI:10.1021/acscatal.4c07353
摘要

The efficient electrochemical CO2 reduction reaction (CO2RR) to long-chain hydrocarbons (C3+) still remains a formidable task even on the widely investigated copper-based catalysts. Recently, nickel-based catalysts have garnered wide attention for their promising ability to generate C3+ products. The design of Ni0-Niδ+ domains, analogous to the renowned Cu0-Cuδ+ strategy, stands out as a hallmark approach, achieving substantial yields of C3–C6 compounds. However, theoretical understanding remains significantly limited. Here, we employ full-solvent ab initio molecular dynamics simulations with a slow-growth approach to investigate Ni0-Niδ+-mediated C–C coupling at partially polarized nickel. In this system, the nonpolarized region is constantly covered by the generated *CO, while the polarized domain─through strategic modulation of Ni’s d-band center─mitigates the poisoning effects of *CO2 and *CO, thereby enhancing their activation. This facilitates C–C coupling primarily between *COOH and *CHx(x = 1, 2), with significantly lower kinetic barriers compared to conventional *CO-involved pathways, laying the foundation for sustained carbon chain growth. Extending this concept to other metals (M = Fe, Rh, Pd, Co and Ru) with similar adsorption characteristics akin to Ni further underscores the potential of M0-Mδ+ domains for CO2 electroreduction. Our study elucidates the microscopic mechanisms by which polarization strategies promote the formation of long-chain products, providing an original perspective for designing CO2 electroreduction catalysts.
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