Water Oxidation Catalysis with Nonheme Iron Complexes under Acidic and Basic Conditions: Homogeneous or Heterogeneous?

被引:160
作者
Hong, Dachao [1 ]
Mandal, Sukanta [2 ]
Yamada, Yusuke [1 ]
Lee, Yong-Min [2 ]
Nam, Wonwoo [2 ]
Llobet, Antoni [2 ,3 ]
Fukuzumi, Shunichi [1 ,2 ]
机构
[1] Osaka Univ, Japan Sci Technol Agcy JST, Grad Sch Engn, Dept Mat & Life Sci,ALCA, Suita, Osaka 5650871, Japan
[2] Ewha Womans Univ, Dept Bioinspired Sci, Seoul 120750, South Korea
[3] Inst Chem Res Catalonia ICIQ, E-43007 Tarragona, Spain
关键词
O-O BOND; MOLECULAR CATALYSTS; RUTHENIUM COMPLEXES; OXIDE NANOPARTICLES; HYDROGEN EVOLUTION; ELECTRON-TRANSFER; OXYGEN EVOLUTION; EFFICIENT; POLYOXOMETALATE; MECHANISMS;
D O I
10.1021/ic401180r
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
Thermal water oxidation by cerium(IV) ammonium nitrate (CAN) was catalyzed by nonheme iron complexes, such as Fe(BQEN)(OTF)(2) (1) and Fe(BQCN)-(OTf)(2) (2) (BQEN = N,N'-dimethyl-N,N'-bis(8-quinolyl)-ethane-1,2-diamine, BQCN = N,N'-dimethyl-N,N'-bis(8-quinolyl)cyclohexanediamine, OTf = CF3SO3-) in a non-buffered aqueous solution; turnover numbers of 80 +/- 10 and 20 +/- 5 were obtained in the O-2 evolution reaction by 1 and 2, respectively. The ligand dissociation of the iron complexes was observed under acidic conditions, and the dissociated ligands were oxidized by CAN to yield CO2. We also observed that 1 was converted to an iron(IV)-oxo complex during the water oxidation in competition with the ligand oxidation. In addition, oxygen exchange between the iron(IV)-oxo complex and (H2O)-O-18 was found to occur at a much faster rate than the oxygen evolution. These results indicate that the iron complexes act as the true homogeneous catalyst for water oxidation by CAN at low pHs. In contrast, light-driven water oxidation using [Ru(bpy)(3)](2+) (bpy = 2,2'-bipyridine) as a photosensitizer and S2O82- as a sacrificial electron acceptor was catalyzed by iron hydroxide nanoparticles derived from the iron complexes under basic conditions as the result of the ligand dissociation. In a buffer solution (initial pH 9.0) formation of the iron hydroxide nanoparticles with a size of around 100 nm at the end of the reaction was monitored by dynamic light scattering (DLS) in situ and characterized by X-ray photoelectron spectra (XPS) and transmission electron microscope (TEM) measurements. We thus conclude that the water oxidation by CAN was catalyzed by short-lived homogeneous iron complexes under acidic conditions, whereas iron hydroxide nanoparticles derived from iron complexes act as a heterogeneous catalyst in the light-driven water oxidation reaction under basic conditions.
引用
收藏
页码:9522 / 9531
页数:10
相关论文
共 104 条
[1]   Regioselective Aliphatic Carbon-Carbon Bond Cleavage by a Model System of Relevance to Iron-Containing Acireductone Dioxygenase [J].
Allpress, Caleb J. ;
Grubel, Katarzyna ;
Szajna-Fuller, Ewa ;
Arif, Atta M. ;
Berreau, Lisa M. .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2013, 135 (02) :659-668
[2]   Solar fuels generation and molecular systems: is it homogeneous or heterogeneous catalysis? [J].
Artero, Vincent ;
Fontecave, Marc .
CHEMICAL SOCIETY REVIEWS, 2013, 42 (06) :2338-2356
[3]   Splitting Water with Cobalt [J].
Artero, Vincent ;
Chavarot-Kerlidou, Murielle ;
Fontecave, Marc .
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2011, 50 (32) :7238-7266
[4]   Aggregation and surface properties of iron oxide nanoparticles: Influence of pH and natural organic matter [J].
Baalousha, Mohammed ;
Manciulea, Adriana ;
Cumberland, Susan ;
Kendall, Kevin ;
Lead, Jamie R. .
ENVIRONMENTAL TOXICOLOGY AND CHEMISTRY, 2008, 27 (09) :1875-1882
[5]  
Barnett SM, 2012, NAT CHEM, V4, P498, DOI [10.1038/NCHEM.1350, 10.1038/nchem.1350]
[6]   Half-Sandwich Iridium Complexes for Homogeneous Water-Oxidation Catalysis [J].
Blakemore, James D. ;
Schley, Nathan D. ;
Balcells, David ;
Hull, Jonathan F. ;
Olack, Gerard W. ;
Incarvito, Christopher D. ;
Eisenstein, Odile ;
Brudvig, Gary W. ;
Crabtree, Robert H. .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2010, 132 (45) :16017-16029
[7]   Effects of a Proximal Base on Water Oxidation and Proton Reduction Catalyzed by Geometric Isomers of [Ru(tpy)(pynap)(OH2)]2+ [J].
Boyer, Julie L. ;
Polyansky, Dmitry E. ;
Szalda, David J. ;
Zong, Ruifa ;
Thummel, Randolph P. ;
Fujita, Etsuko .
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2011, 50 (52) :12600-12604
[8]   The Ru-Hbpp Water Oxidation Catalyst [J].
Bozoglian, Fernando ;
Romain, Sophie ;
Ertem, Mehmed Z. ;
Todorova, Tanya K. ;
Sens, Cristina ;
Mola, Joaquim ;
Rodriguez, Montserrat ;
Romero, Isabel ;
Benet-Buchholz, Jordi ;
Fontrodona, Xavier ;
Cramer, Christopher J. ;
Gagliardi, Laura ;
Llobet, Antoni .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2009, 131 (42) :15176-15187
[9]   Non-heme iron-dependent dioxygenases: unravelling catalytic mechanisms for complex enzymatic oxidations [J].
Bugg, Timothy D. H. ;
Ramaswamy, S. .
CURRENT OPINION IN CHEMICAL BIOLOGY, 2008, 12 (02) :134-140
[10]   Catalytic water oxidation at single metal sites [J].
Cao, Rui ;
Lai, Wenzhen ;
Du, Pingwu .
ENERGY & ENVIRONMENTAL SCIENCE, 2012, 5 (08) :8134-8157