C3 production from CO2 reduction by concerted *CO trimerization on a single-atom alloy catalyst

被引:41
作者
Chen, Ling [1 ]
Tang, Cheng [1 ]
Zheng, Yao [1 ]
Skulason, Egill [2 ]
Jiao, Yan [1 ]
机构
[1] Univ Adelaide, Sch Chem Engn & Adv Mat, Adelaide, SA 5005, Australia
[2] Univ Iceland, Fac Ind Engn Mech Engn & Comp Sci, Sci Inst, Reykjavik, Iceland
基金
澳大利亚研究理事会;
关键词
ELECTROCHEMICAL REDUCTION; CARBON-MONOXIDE; ENERGY CALCULATIONS; ACTIVE-SITES; ELECTROREDUCTION; SELECTIVITY; DIOXIDE; CU(100); IDENTIFICATION; CONVERSION;
D O I
10.1039/d1ta09608g
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The direct electroreduction of carbon dioxide (CO2) and carbon monoxide (CO) to C-3 products is challenging. The main reason is the competitive C-2 production resulting from a traditional sequential C-C coupling mechanism. As a result, most catalysts could not facilitate C-3 products since the carbon chain growth from C-2 to C-3 competes with C-2 desorption. In this work, we carried out Density Functional Theory (DFT) calculations with implicit solvation effects on densely arrayed Cu nanopyramids (Cu-DANs). We demonstrate that the co-adsorption energy of three *CO intermediates (Delta G(3*CO); from the CO2 or CO reactant) is a descriptor for C-3 activity. An activity volcano plot was constructed based on this discovery, which can be used to predict the optimal range for Delta G(3*CO) adsorption strength. We demonstrate that by applying the single-atom alloy catalyst strategy, i.e. embedding Ag single metal onto Cu-DANs, we could successfully tune the Delta G(3*CO) strength toward the optimal range. In addition, the adsorbed *CO could form a long carbon chain on such a structure via a one-step concerted trimerization mechanism to form the key C-3 reaction intermediate, avoiding the competitive C-2 desorption pathway. Furthermore, Ag-doped Cu-DANs could effectively retain oxygen atoms in the hydroxyl group, which enabled a pathway towards direct electrosynthesis of a new C-3 product (C3H8O2; 1,2-PDO) beyond the only available n-propanol. Our newly discovered concerted trimerization mechanism in combination with single-atom alloy catalysts paves the way for materials design toward more long-chain oxygenate generation.
引用
收藏
页码:5998 / 6006
页数:9
相关论文
共 58 条
[1]   Ab Initio Cyclic Voltammetry on Cu(111), Cu(100) and Cu(110) in Acidic, Neutral and Alkaline Solutions [J].
Bagger, Alexander ;
Aran-Ais, Rosa M. ;
Stenlid, Joakim Halldin ;
dos Santos, Egon Campos ;
Arnarson, Logi ;
Jensen, Kim Degn ;
Escudero-Escribano, Maria ;
Cuenya, Beatriz Roldan ;
Rossmeisl, Jan .
CHEMPHYSCHEM, 2019, 20 (22) :3096-3105
[2]  
Birat J. P., 2010, UNIDO GLOB TECHN ROA
[3]   Ligand effects in heterogeneous catalysis and electrochemistry [J].
Bligaard, T. ;
Norskov, J. K. .
ELECTROCHIMICA ACTA, 2007, 52 (18) :5512-5516
[4]   Theoretical Considerations on the Electroreduction of CO to C2 Species on Cu(100) Electrodes [J].
Calle-Vallejo, Federico ;
Koper, Marc T. M. .
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2013, 52 (28) :7282-7285
[5]   Boosting Electrocatalytic Water Oxidation by Creating Defects and Lattice-Oxygen Active Sites on Ni-Fe Nanosheets [J].
Chen, Chi ;
Zhang, Peili ;
Wang, Mei ;
Zheng, Dehua ;
Chen, Junchi ;
Li, Fusheng ;
Wu, Xiujuan ;
Fan, Ke ;
Sun, Licheng .
CHEMSUSCHEM, 2020, 13 (18) :5067-5072
[6]   Spatial-confinement induced electroreduction of CO and CO2 to diols on densely-arrayed Cu nanopyramids [J].
Chen, Ling ;
Tang, Cheng ;
Davey, Kenneth ;
Zheng, Yao ;
Jiao, Yan ;
Qiao, Shi-Zhang .
CHEMICAL SCIENCE, 2021, 12 (23) :8079-8087
[7]   Ethylene Selectivity in Electrocatalytic CO2 Reduction on Cu Nanomaterials: A Crystal Phase-Dependent Study [J].
Chen, Ye ;
Fan, Zhanxi ;
Wang, Jiong ;
Ling, Chongyi ;
Niu, Wenxin ;
Huang, Zhiqi ;
Liu, Guigao ;
Chen, Bo ;
Lai, Zhuangchai ;
Liu, Xiaozhi ;
Li, Bing ;
Zong, Yun ;
Gu, Lin ;
Wang, Jinlan ;
Wang, Xin ;
Zhang, Hua .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2020, 142 (29) :12760-12766
[8]   Nature of the Active Sites for CO Reduction on Copper Nanoparticles; Suggestions for Optimizing Performance [J].
Cheng, Tao ;
Xiao, Hai ;
Goddard, William A. .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2017, 139 (34) :11642-11645
[9]   Full atomistic reaction mechanism with kinetics for CO reduction on Cu(100) from ab initio molecular dynamics free-energy calculations at 298 K [J].
Cheng, Tao ;
Xiao, Hai ;
Goddard, William A., III .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2017, 114 (08) :1795-1800
[10]   2D Metal Oxyhalide-Derived Catalysts for Efficient CO2 Electroreduction [J].
de Arquer, F. Pelayo Garcia ;
Bushuyev, Oleksandr S. ;
De Luna, Phil ;
Cao-Thang Dinh ;
Seifitokaldani, Ali ;
Saidaminov, Makhsud I. ;
Tan, Chih-Shan ;
Quan, Li Na ;
Proppe, Andrew ;
Kibria, Md. Golam ;
Kelley, Shana O. ;
Sinton, David ;
Sargent, Edward H. .
ADVANCED MATERIALS, 2018, 30 (38)