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Volumn 12, Issue 1, 2018, Pages 568-575

Photocatalytically Active Superstructures of Quantum Dots and Iron Porphyrins for Reduction of CO2 to CO in Water

Author keywords

artificial photosynthesis; copper indium sulfide; electrostatic self assembly; nanocrystals; photoredox catalysis

Indexed keywords

ARTIFICIAL PHOTOSYNTHESIS; CARBON DIOXIDE; CATALYST ACTIVITY; CATALYSTS; COPPER COMPOUNDS; ELECTROSTATICS; INDIUM SULFIDE; IRON; LIGHT; NANOCRYSTALS; PHOTONS; PORPHYRINS; REDOX REACTIONS; SELF ASSEMBLY; SEMICONDUCTOR QUANTUM DOTS; SULFUR COMPOUNDS;

EID: 85042183089     PISSN: 19360851     EISSN: 1936086X     Source Type: Journal    
DOI: 10.1021/acsnano.7b07377     Document Type: Article
Times cited : (144)

References (50)
  • 2
    • 79951781583 scopus 로고    scopus 로고
    • The Water Oxidation Bottleneck in Artificial Photosynthesis: How Can We Get through It? An Alternative Route Involving a Two-Electron Process
    • Inoue, H.; Shimada, T.; Kou, Y.; Nabetani, Y.; Masui, D.; Takagi, S.; Tachibana, H. The Water Oxidation Bottleneck in Artificial Photosynthesis: How Can We Get through It? An Alternative Route Involving a Two-Electron Process ChemSusChem 2011, 4, 173-179 10.1002/cssc.201000385
    • (2011) ChemSusChem , vol.4 , pp. 173-179
    • Inoue, H.1    Shimada, T.2    Kou, Y.3    Nabetani, Y.4    Masui, D.5    Takagi, S.6    Tachibana, H.7
  • 3
    • 1642331709 scopus 로고    scopus 로고
    • Architecture of the Photosynthetic Oxygen-Evolving Center
    • Ferreira, K. N.; Iverson, T. M.; Maghlaoui, K.; Barber, J.; Iwata, S. Architecture of the Photosynthetic Oxygen-Evolving Center Science 2004, 303, 1831 10.1126/science.1093087
    • (2004) Science , vol.303 , pp. 1831
    • Ferreira, K.N.1    Iverson, T.M.2    Maghlaoui, K.3    Barber, J.4    Iwata, S.5
  • 4
    • 8144230165 scopus 로고    scopus 로고
    • Structure-Based Mechanism of Photosynthetic Water Oxidation
    • McEvoy, J. P.; Brudvig, G. W. Structure-Based Mechanism of Photosynthetic Water Oxidation Phys. Chem. Chem. Phys. 2004, 6, 4754-4763 10.1039/b407500e
    • (2004) Phys. Chem. Chem. Phys. , vol.6 , pp. 4754-4763
    • McEvoy, J.P.1    Brudvig, G.W.2
  • 5
    • 85009821148 scopus 로고    scopus 로고
    • Combining Theory and Experiment in Electrocatalysis: Insights into Materials Design
    • Seh, Z. W.; Kibsgaard, J.; Dickens, C. F.; Chorkendorff, I.; Nørskov, J. K.; Jaramillo, T. F. Combining Theory and Experiment in Electrocatalysis: Insights into Materials Design Science 2017, 355, eaad4998 10.1126/science.aad4998
    • (2017) Science , vol.355 , pp. eaad4998
    • Seh, Z.W.1    Kibsgaard, J.2    Dickens, C.F.3    Chorkendorff, I.4    Nørskov, J.K.5    Jaramillo, T.F.6
  • 7
    • 85027129705 scopus 로고    scopus 로고
    • Electrochemical and Spectroscopic Methods for Evaluating Molecular Electrocatalysts
    • Lee, K. J.; Elgrishi, N.; Kandemir, B.; Dempsey, J. L. Electrochemical and Spectroscopic Methods for Evaluating Molecular Electrocatalysts Nat. Rev. Chem. 2017, 1, 0039 10.1038/s41570-017-0039
    • (2017) Nat. Rev. Chem. , vol.1 , pp. 0039
    • Lee, K.J.1    Elgrishi, N.2    Kandemir, B.3    Dempsey, J.L.4
  • 8
    • 85021109290 scopus 로고    scopus 로고
    • Homogeneous Molecular Catalysis of Electrochemical Reactions: Catalyst Benchmarking and Optimization Strategies
    • Costentin, C.; Savéant, J.-M. Homogeneous Molecular Catalysis of Electrochemical Reactions: Catalyst Benchmarking and Optimization Strategies J. Am. Chem. Soc. 2017, 139, 8245-8250 10.1021/jacs.7b02879
    • (2017) J. Am. Chem. Soc. , vol.139 , pp. 8245-8250
    • Costentin, C.1    Savéant, J.-M.2
  • 9
    • 85027412247 scopus 로고    scopus 로고
    • Identifying and Breaking Scaling Relations in Molecular Catalysis of Electrochemical Reactions
    • Pegis, M. L.; Wise, C. F.; Koronkiewicz, B.; Mayer, J. M. Identifying and Breaking Scaling Relations in Molecular Catalysis of Electrochemical Reactions J. Am. Chem. Soc. 2017, 139, 11000-11003 10.1021/jacs.7b05642
    • (2017) J. Am. Chem. Soc. , vol.139 , pp. 11000-11003
    • Pegis, M.L.1    Wise, C.F.2    Koronkiewicz, B.3    Mayer, J.M.4
  • 10
    • 85026313831 scopus 로고    scopus 로고
    • Designing the Surfaces of Semiconductor Quantum Dots for Colloidal Photocatalysis
    • Weiss, E. A. Designing the Surfaces of Semiconductor Quantum Dots for Colloidal Photocatalysis ACS Energy Lett. 2017, 2, 1005-1013 10.1021/acsenergylett.7b00061
    • (2017) ACS Energy Lett. , vol.2 , pp. 1005-1013
    • Weiss, E.A.1
  • 14
    • 85022062949 scopus 로고    scopus 로고
    • 2 Reduction Catalyst with Visible Light through Multiple Sub-Picosecond Electron Transfers from a Quantum Dot
    • 2 Reduction Catalyst with Visible Light through Multiple Sub-Picosecond Electron Transfers from a Quantum Dot J. Am. Chem. Soc. 2017, 139, 8931-8938 10.1021/jacs.7b03134
    • (2017) J. Am. Chem. Soc. , vol.139 , pp. 8931-8938
    • Lian, S.1    Kodaimati, M.S.2    Dolzhnikov, D.S.3    Calzada, R.4    Weiss, E.A.5
  • 16
    • 5144231237 scopus 로고    scopus 로고
    • Solubility of Carbon Dioxide in Dimethylsulfoxide and N-Methyl-2-Pyrrolidone at Elevated Pressure
    • Rajasingam, R.; Lioe, L.; Pham, Q. T.; Lucien, F. P. Solubility of Carbon Dioxide in Dimethylsulfoxide and N-Methyl-2-Pyrrolidone at Elevated Pressure J. Supercrit. Fluids 2004, 31, 227-234 10.1016/j.supflu.2003.12.003
    • (2004) J. Supercrit. Fluids , vol.31 , pp. 227-234
    • Rajasingam, R.1    Lioe, L.2    Pham, Q.T.3    Lucien, F.P.4
  • 17
    • 85020036187 scopus 로고    scopus 로고
    • 2 Reduction in Water through Anchoring of a Molecular Ni Catalyst on CdS Nanocrystals
    • 2 Reduction in Water through Anchoring of a Molecular Ni Catalyst on CdS Nanocrystals J. Am. Chem. Soc. 2017, 139, 7217-7223 10.1021/jacs.7b00369
    • (2017) J. Am. Chem. Soc. , vol.139 , pp. 7217-7223
    • Kuehnel, M.F.1    Orchard, K.L.2    Dalle, K.E.3    Reisner, E.4
  • 18
    • 85029484079 scopus 로고    scopus 로고
    • 4 Nanosheets/Tetra(4-Carboxyphenyl)Porphyrin Iron(III) Chloride Heterogeneous Catalysts
    • 4 Nanosheets/Tetra(4-Carboxyphenyl)Porphyrin Iron(III) Chloride Heterogeneous Catalysts Appl. Catal., B 2018, 221, 312-319 10.1016/j.apcatb.2017.09.033
    • (2018) Appl. Catal., B , vol.221 , pp. 312-319
    • Lin, L.1    Hou, C.2    Zhang, X.3    Wang, Y.4    Chen, Y.5    He, T.6
  • 20
    • 84866890642 scopus 로고    scopus 로고
    • Engaging Unactivated Alkyl, Alkenyl and Aryl Iodides in Visible-Light-Mediated Free Radical Reactions
    • Nguyen, J. D.; D'Amato, E. M.; Narayanam, J. M. R.; Stephenson, C. R. J. Engaging Unactivated Alkyl, Alkenyl and Aryl Iodides in Visible-Light-Mediated Free Radical Reactions Nat. Chem. 2012, 4, 854-859 10.1038/nchem.1452
    • (2012) Nat. Chem. , vol.4 , pp. 854-859
    • Nguyen, J.D.1    D'Amato, E.M.2    Narayanam, J.M.R.3    Stephenson, C.R.J.4
  • 22
    • 85035070660 scopus 로고    scopus 로고
    • 2 into CO in Aqueous Solutions with an Iron Catalyst
    • 2 into CO in Aqueous Solutions with an Iron Catalyst ChemSusChem 2017, 10, 4447 10.1002/cssc.201701467
    • (2017) ChemSusChem , vol.10 , pp. 4447
    • Rao, H.1    Bonin, J.2    Robert, M.3
  • 23
    • 84951767496 scopus 로고    scopus 로고
    • Thiol-Free Synthesized Copper Indium Sulfide Nanocrystals as Optoelectronic Quantum Dot Solids
    • So, D.; Konstantatos, G. Thiol-Free Synthesized Copper Indium Sulfide Nanocrystals as Optoelectronic Quantum Dot Solids Chem. Mater. 2015, 27, 8424-8432 10.1021/acs.chemmater.5b03943
    • (2015) Chem. Mater. , vol.27 , pp. 8424-8432
    • So, D.1    Konstantatos, G.2
  • 24
    • 0005687625 scopus 로고
    • Stability of Zinc Complexes with Glutathione and Oxidized Glutathione1
    • Li, N. C.; Gawron, O.; Bascuas, G. Stability of Zinc Complexes with Glutathione and Oxidized Glutathione1 J. Am. Chem. Soc. 1954, 76, 225-229 10.1021/ja01630a058
    • (1954) J. Am. Chem. Soc. , vol.76 , pp. 225-229
    • Li, N.C.1    Gawron, O.2    Bascuas, G.3
  • 25
    • 0009557365 scopus 로고
    • Stability Constants for Some 1:1 Metal-Carboxylate Complexes
    • Bunting, J. W.; Thong, K. M. Stability Constants for Some 1:1 Metal-Carboxylate Complexes Can. J. Chem. 1970, 48, 1654-1656 10.1139/v70-273
    • (1970) Can. J. Chem. , vol.48 , pp. 1654-1656
    • Bunting, J.W.1    Thong, K.M.2
  • 26
    • 79955125723 scopus 로고    scopus 로고
    • Bridging Interactions and Selective Nanoparticle Aggregation Mediated by Monovalent Cations
    • Wang, D.; Tejerina, B.; Lagzi, I.; Kowalczyk, B.; Grzybowski, B. A. Bridging Interactions and Selective Nanoparticle Aggregation Mediated by Monovalent Cations ACS Nano 2011, 5, 530-536 10.1021/nn1025252
    • (2011) ACS Nano , vol.5 , pp. 530-536
    • Wang, D.1    Tejerina, B.2    Lagzi, I.3    Kowalczyk, B.4    Grzybowski, B.A.5
  • 27
    • 79951842389 scopus 로고    scopus 로고
    • How and Why Nanoparticle's Curvature Regulates the Apparent pKa of the Coating Ligands
    • Wang, D.; Nap, R. J.; Lagzi, I.; Kowalczyk, B.; Han, S.; Grzybowski, B. A.; Szleifer, I. How and Why Nanoparticle's Curvature Regulates the Apparent pKa of the Coating Ligands J. Am. Chem. Soc. 2011, 133, 2192-2197 10.1021/ja108154a
    • (2011) J. Am. Chem. Soc. , vol.133 , pp. 2192-2197
    • Wang, D.1    Nap, R.J.2    Lagzi, I.3    Kowalczyk, B.4    Han, S.5    Grzybowski, B.A.6    Szleifer, I.7
  • 28
    • 84896945979 scopus 로고    scopus 로고
    • Mechanisms for Adsorption of Methyl Viologen on CdS Quantum Dots
    • Peterson, M. D.; Jensen, S. C.; Weinberg, D. J.; Weiss, E. A. Mechanisms for Adsorption of Methyl Viologen on CdS Quantum Dots ACS Nano 2014, 8, 2826-2837 10.1021/nn406651a
    • (2014) ACS Nano , vol.8 , pp. 2826-2837
    • Peterson, M.D.1    Jensen, S.C.2    Weinberg, D.J.3    Weiss, E.A.4
  • 29
    • 36049001806 scopus 로고    scopus 로고
    • Molecular Dynamics Simulation Study of Self-Assembled Monolayers of Alkanethiol Surfactants on Spherical Gold Nanoparticles
    • Ghorai, P. K.; Glotzer, S. C. Molecular Dynamics Simulation Study of Self-Assembled Monolayers of Alkanethiol Surfactants on Spherical Gold Nanoparticles J. Phys. Chem. C 2007, 111, 15857-15862 10.1021/jp0746289
    • (2007) J. Phys. Chem. C , vol.111 , pp. 15857-15862
    • Ghorai, P.K.1    Glotzer, S.C.2
  • 30
    • 84862180992 scopus 로고    scopus 로고
    • 2 Quantum Dots from the Size-Dependent Molar Extinction Coefficient
    • 2 Quantum Dots from the Size-Dependent Molar Extinction Coefficient Chem. Mater. 2012, 24, 2064-2070 10.1021/cm300227b
    • (2012) Chem. Mater. , vol.24 , pp. 2064-2070
    • Booth, M.1    Brown, A.P.2    Evans, S.D.3    Critchley, K.4
  • 31
    • 0017250524 scopus 로고
    • Equilibrium and Kinetic Studies of the Aggregation of Porphyrins in Aqueous Solution
    • Brown, S. B.; Shillcock, M.; Jones, P. Equilibrium and Kinetic Studies of the Aggregation of Porphyrins in Aqueous Solution Biochem. J. 1976, 153, 279 10.1042/bj1530279
    • (1976) Biochem. J. , vol.153 , pp. 279
    • Brown, S.B.1    Shillcock, M.2    Jones, P.3
  • 32
    • 0031998187 scopus 로고    scopus 로고
    • J- and H-Aggregates of Porphyrin-Surfactant Complexes: Time-Resolved Fluorescence and Other Spectroscopic Studies
    • Maiti, N. C.; Mazumdar, S.; Periasamy, N. J- and H-Aggregates of Porphyrin-Surfactant Complexes: Time-Resolved Fluorescence and Other Spectroscopic Studies J. Phys. Chem. B 1998, 102, 1528-1538 10.1021/jp9723372
    • (1998) J. Phys. Chem. B , vol.102 , pp. 1528-1538
    • Maiti, N.C.1    Mazumdar, S.2    Periasamy, N.3
  • 33
    • 84858308879 scopus 로고    scopus 로고
    • A Study of the Binding of Cyanine Dyes to Colloidal Quantum Dots Using Spectral Signatures of Dye Aggregation
    • McArthur, E. A.; Godbe, J. M.; Tice, D. B.; Weiss, E. A. A Study of the Binding of Cyanine Dyes to Colloidal Quantum Dots Using Spectral Signatures of Dye Aggregation J. Phys. Chem. C 2012, 116, 6136-6142 10.1021/jp300478g
    • (2012) J. Phys. Chem. C , vol.116 , pp. 6136-6142
    • McArthur, E.A.1    Godbe, J.M.2    Tice, D.B.3    Weiss, E.A.4
  • 34
    • 33645870443 scopus 로고    scopus 로고
    • Spectroscopic Properties and Electronic Structure of Five- and Six-Coordinate Iron(II) Porphyrin NO Complexes: Effect of the Axial N-Donor Ligand
    • Praneeth, V. K. K.; Näther, C.; Peters, G.; Lehnert, N. Spectroscopic Properties and Electronic Structure of Five- and Six-Coordinate Iron(II) Porphyrin NO Complexes: Effect of the Axial N-Donor Ligand Inorg. Chem. 2006, 45, 2795-2811 10.1021/ic050865j
    • (2006) Inorg. Chem. , vol.45 , pp. 2795-2811
    • Praneeth, V.K.K.1    Näther, C.2    Peters, G.3    Lehnert, N.4
  • 37
    • 84967189214 scopus 로고    scopus 로고
    • 2 Quantum Dots. Bandgap Versus Sub-Bandgap Excitations in Copper-Deficient Structures
    • 2 Quantum Dots. Bandgap Versus Sub-Bandgap Excitations in Copper-Deficient Structures J. Phys. Chem. Lett. 2016, 7, 1452-1459 10.1021/acs.jpclett.6b00571
    • (2016) J. Phys. Chem. Lett. , vol.7 , pp. 1452-1459
    • Jara, D.H.1    Stamplecoskie, K.G.2    Kamat, P.V.3
  • 38
    • 68349122535 scopus 로고    scopus 로고
    • Nanoscale Forces and Their Uses in Self-Assembly
    • Bishop, K. J. M.; Wilmer, C. E.; Soh, S.; Grzybowski, B. A. Nanoscale Forces and Their Uses in Self-Assembly Small 2009, 5, 1600-1630 10.1002/smll.200900358
    • (2009) Small , vol.5 , pp. 1600-1630
    • Bishop, K.J.M.1    Wilmer, C.E.2    Soh, S.3    Grzybowski, B.A.4
  • 39
    • 0001763020 scopus 로고    scopus 로고
    • Determination of Surface pKa of SAM Using an Electrochemical Titration Method
    • Zhao, J.; Luo, L.; Yang, X.; Wang, E.; Dong, S. Determination of Surface pKa of SAM Using an Electrochemical Titration Method Electroanalysis 1999, 11, 1108-1113 10.1002/(SICI)1521-4109(199911)11:15<1108::AID-ELAN1108>3.0.CO;2-Z
    • (1999) Electroanalysis , vol.11 , pp. 1108-1113
    • Zhao, J.1    Luo, L.2    Yang, X.3    Wang, E.4    Dong, S.5
  • 40
    • 68749113872 scopus 로고    scopus 로고
    • Role of Hydrogen Bonding in the pH-Dependent Aggregation of Colloidal Gold Particles Bearing Solution-Facing Carboxylic Acid Groups
    • Preston, T. C.; Nuruzzaman, M.; Jones, N. D.; Mittler, S. Role of Hydrogen Bonding in the pH-Dependent Aggregation of Colloidal Gold Particles Bearing Solution-Facing Carboxylic Acid Groups J. Phys. Chem. C 2009, 113, 14236-14244 10.1021/jp903284h
    • (2009) J. Phys. Chem. C , vol.113 , pp. 14236-14244
    • Preston, T.C.1    Nuruzzaman, M.2    Jones, N.D.3    Mittler, S.4
  • 41
    • 85027400736 scopus 로고    scopus 로고
    • Promoter Effects of Alkali Metal Cations on the Electrochemical Reduction of Carbon Dioxide
    • Resasco, J.; Chen, L. D.; Clark, E.; Tsai, C.; Hahn, C.; Jaramillo, T. F.; Chan, K.; Bell, A. T. Promoter Effects of Alkali Metal Cations on the Electrochemical Reduction of Carbon Dioxide J. Am. Chem. Soc. 2017, 139, 11277 10.1021/jacs.7b06765
    • (2017) J. Am. Chem. Soc. , vol.139 , pp. 11277
    • Resasco, J.1    Chen, L.D.2    Clark, E.3    Tsai, C.4    Hahn, C.5    Jaramillo, T.F.6    Chan, K.7    Bell, A.T.8
  • 43
    • 84957542423 scopus 로고    scopus 로고
    • Manganese Electrocatalysts with Bulky Bipyridine Ligands: Utilizing Lewis Acids to Promote Carbon Dioxide Reduction at Low Overpotentials
    • Sampson, M. D.; Kubiak, C. P. Manganese Electrocatalysts with Bulky Bipyridine Ligands: Utilizing Lewis Acids to Promote Carbon Dioxide Reduction at Low Overpotentials J. Am. Chem. Soc. 2016, 138, 1386-1393 10.1021/jacs.5b12215
    • (2016) J. Am. Chem. Soc. , vol.138 , pp. 1386-1393
    • Sampson, M.D.1    Kubiak, C.P.2
  • 44
    • 84915820681 scopus 로고    scopus 로고
    • 2 to CO Using Iron(0) Porphyrin Catalysts: Mechanism and Intrinsic Limitations
    • 2 to CO Using Iron(0) Porphyrin Catalysts: Mechanism and Intrinsic Limitations ChemCatChem 2014, 6, 3200-3207 10.1002/cctc.201402515
    • (2014) ChemCatChem , vol.6 , pp. 3200-3207
    • Bonin, J.1    Chaussemier, M.2    Robert, M.3    Routier, M.4
  • 49
    • 78650102011 scopus 로고    scopus 로고
    • Charge Carrier Resolved Relaxation of the First Excitonic State in CdSe Quantum Dots Probed with near-Infrared Transient Absorption Spectroscopy
    • McArthur, E. A.; Morris-Cohen, A. J.; Knowles, K. E.; Weiss, E. A. Charge Carrier Resolved Relaxation of the First Excitonic State in CdSe Quantum Dots Probed with near-Infrared Transient Absorption Spectroscopy J. Phys. Chem. B 2010, 114, 14514-14520 10.1021/jp102101f
    • (2010) J. Phys. Chem. B , vol.114 , pp. 14514-14520
    • McArthur, E.A.1    Morris-Cohen, A.J.2    Knowles, K.E.3    Weiss, E.A.4
  • 50
    • 84990019671 scopus 로고    scopus 로고
    • Electrostatic Control of Excitonic Energies and Dynamics in a CdS Quantum Dot through Reversible Protonation of Its Ligands
    • Thompson, C. M.; Kodaimati, M.; Westmoreland, D.; Calzada, R.; Weiss, E. A. Electrostatic Control of Excitonic Energies and Dynamics in a CdS Quantum Dot through Reversible Protonation of Its Ligands J. Phys. Chem. Lett. 2016, 7, 3954-3960 10.1021/acs.jpclett.6b01899
    • (2016) J. Phys. Chem. Lett. , vol.7 , pp. 3954-3960
    • Thompson, C.M.1    Kodaimati, M.2    Westmoreland, D.3    Calzada, R.4    Weiss, E.A.5


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