Ligand Substituents Govern the Efficiency and Mechanistic Path of Hydrogen Production with [Cp*Rh] Catalysts

被引:30
作者
Henke, Wade C. [1 ]
Lionetti, Davide [1 ]
Moore, William N. G. [1 ]
Hopkins, Julie A. [1 ]
Day, Victor W. [1 ]
Blakemore, James D. [1 ]
机构
[1] Univ Kansas, Dept Chem, 1251 Wescoe Hall Dr, Lawrence, KS 66045 USA
基金
美国国家科学基金会;
关键词
cyclopentadienyl ligands; homogeneous catalysis; molecular electrochemistry; reaction mechanisms; water splitting; IRIDIUM COMPLEXES; PENTAMETHYLCYCLOPENTADIENYL-RHODIUM; ELECTROCHEMICAL PROPERTIES; CHEMICAL-SHIFTS; EVOLUTION; REDUCTION; DERIVATIVES; CARBON; WATER; ELECTROCATALYSTS;
D O I
10.1002/cssc.201701416
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
We demonstrate that [Cp*Rh] complexes bearing substituted 2,2'-bipyridyl ligands are effective hydrogen evolution catalysts (Cp*= eta(5)-pentamethylcyclopentadienyl). Disubstitution (at the 4 and 4' positions) of the bipyridyl ligand (namely -tBu, -H, and -CF3) modulates the catalytic overpotential, in part due to involvement of the reduced ligand character in formally rhodium(I) intermediates. These reduced species are synthesized and isolated here; protonation results in formation of complexes bearing the unusual eta(4)-pentamethylcyclopentadiene ligand, and the properties of these protonated intermediates further govern the catalytic performance. Electrochemical studies suggest that multiple mechanistic pathways are accessible, and that the operative pathway depends on the applied potential and solution conditions. Taken together, these results suggest synergy in metal-ligand cooperation that modulates the mechanisms of fuel-forming catalysis with organometallic compounds bearing multiple non-innocent ligands.
引用
收藏
页码:4589 / 4598
页数:10
相关论文
共 64 条
[1]  
[Anonymous], 1987, Angewandte Chemie
[2]   Determining the Overpotential for a Molecular Electrocatalyst [J].
Appel, Aaron M. ;
Helm, Monte L. .
ACS CATALYSIS, 2014, 4 (02) :630-633
[3]   Frontiers, Opportunities, and Challenges in Biochemical and Chemical Catalysis of CO2 Fixation [J].
Appel, Aaron M. ;
Bercaw, John E. ;
Bocarsly, Andrew B. ;
Dobbek, Holger ;
DuBois, Daniel L. ;
Dupuis, Michel ;
Ferry, James G. ;
Fujita, Etsuko ;
Hille, Russ ;
Kenis, Paul J. A. ;
Kerfeld, Cheal A. ;
Morris, Robert H. ;
Peden, Charles H. F. ;
Portis, Archie R. ;
Ragsdale, Stephen W. ;
Rauchfuss, Thomas B. ;
Reek, Joost N. H. ;
Seefeldt, Lance C. ;
Thauer, Rudolf K. ;
Waldrop, Grover L. .
CHEMICAL REVIEWS, 2013, 113 (08) :6621-6658
[4]  
Ben-Ari E., 2006, AM CHEM SOC, V128, P15390
[5]  
BERCAW JE, 1971, J AM CHEM SOC, V93, P2045
[6]   Pentamethylcyclopentadienyl rhodium complexes [J].
Blakemore, James D. ;
Hernandez, Emilia S. ;
Sattler, Wesley ;
Hunter, Bryan M. ;
Henling, Lawrence M. ;
Brunschwig, Bruce S. ;
Gray, Harry B. .
POLYHEDRON, 2014, 84 :14-18
[7]   Noncovalent Immobilization of Electrocatalysts on Carbon Electrodes for Fuel Production [J].
Blakemore, James D. ;
Gupta, Ayush ;
Warren, Jeffrey J. ;
Brunschwig, Bruce S. ;
Gray, Harry B. .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2013, 135 (49) :18288-18291
[8]   (Pentamethylcyclopentadienyl) (polypyridyl) rhodium and iridium complexes as electrocatalysts for the reduction of protons to dihydrogen and the hydrogenation of organics [J].
Caix, C ;
ChardonNoblat, S ;
Deronzier, A ;
Moutet, JC ;
Tingry, S .
JOURNAL OF ORGANOMETALLIC CHEMISTRY, 1997, 540 (1-2) :105-111
[9]   ELECTROCHEMICAL PROPERTIES OF [(C5ME5)RHIII(L)CL]+ COMPLEXES (L=2,2'-BIPYRIDINE OR 1,10-PHENANTHROLINE DERIVATIVES) IN SOLUTION AND IN RELATED POLYPYRROLIC FILMS - APPLICATION TO ELECTROCATALYTIC HYDROGEN GENERATION [J].
CHARDONNOBLAT, S ;
COSNIER, S ;
DERONZIER, A ;
VLACHOPOULOS, N .
JOURNAL OF ELECTROANALYTICAL CHEMISTRY, 1993, 352 (1-2) :213-228
[10]   Chemical redox agents for organometallic chemistry [J].
Connelly, NG ;
Geiger, WE .
CHEMICAL REVIEWS, 1996, 96 (02) :877-910