Free Energy Dependencies for Interfacial Electron Transfer from Tin-Doped Indium Oxide (ITO) to Molecular Photoredox Catalysts

被引:6
作者
Bangle, Rachel E. [1 ]
Schneider, Jenny [1 ]
Loague, Quentin [1 ]
Kessinger, Matthew [1 ]
Muller, Andressa, V [1 ]
Meyer, Gerald J. [1 ]
机构
[1] Univ N Carolina, Dept Chem, Chapel Hill, NC 27599 USA
关键词
TRANSITION-METAL COMPOUNDS; TRANSFER DYNAMICS; CHARGE-TRANSFER; SELF-EXCHANGE; SOLAR-CELLS; DYE; TIO2; SNO2; TRANSPORT; ZNO;
D O I
10.1149/2162-8777/ac5169
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
John B. Goodenough proposed that interfacial electron transfer kinetics from main group metal oxides should be fundamentally different from that of transition metal oxides, an expectation that has not been widely tested. Herein, the kinetics for interfacial electron transfer from mesoporous transparent conductive oxide Tin-doped Indium Oxide (ITO) to four photoredox catalysts (PCs) were characterized in acetonitrile electrolytes. The photocatalysts had the form: [Ru(4,4MODIFIER LETTER PRIME-R-2-2,2 '-bipyridine)(2)(4,4MODIFIER LETTER PRIME-(PO3H2)(2)-2,2 '-bipyridine)](2+), where R was H, methoxy, tert-butyl, and Br. The impact of the surface binding group was characterized with [Ru(2,2 '-bipyridine)(2)(4,4MODIFIER LETTER PRIME-(CO2H)(2)-bpy)](2+). The interfacial electron transfer reaction ITO(e(-)) divide PC+ -> ITO divide PC was quantified by nanosecond absorption spectroscopy as a function of the applied potential (and hence -Delta G degrees). Specific conditions of applied potential were identified where the kinetics were sensitive to the incident irradiance. A layer-by-layer method was used to insert ionic methylene bridge(s) between the PC and the oxide surface. Marcus-Gerischer analysis of the kinetic data indicates non-adiabatic interfacial electron transfer with total reorganization energies that increase when bridges were placed between the photocatalyst and the ITO surface. (c) 2022 The Electrochemical Society ("ECS"). Published on behalf of ECS by IOP Publishing Limited.
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页数:10
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共 59 条
  • [1] THE TRANSPORT AND KINETICS OF PHOTOGENERATED CARRIERS IN COLLOIDAL SEMICONDUCTOR ELECTRODE PARTICLES
    ALBERY, WJ
    BARTLETT, PN
    [J]. JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 1984, 131 (02) : 315 - 325
  • [2] CHEMICAL MODIFICATION OF A TITANIUM(IV) OXIDE ELECTRODE TO GIVE STABLE DYE SENSITIZATION WITHOUT A SUPERSENSITIZER
    ANDERSON, S
    CONSTABLE, EC
    DAREEDWARDS, MP
    GOODENOUGH, JB
    HAMNETT, A
    SEDDON, KR
    WRIGHT, RD
    [J]. NATURE, 1979, 280 (5723) : 571 - 573
  • [3] Solvent influence on non-adiabatic interfacial electron transfer at conductive oxide electrolyte interfaces
    Aramburu-Troselj, Bruno M.
    Bangle, Rachel E.
    Meyer, Gerald J.
    [J]. JOURNAL OF CHEMICAL PHYSICS, 2020, 153 (13)
  • [4] Photodriven heterogeneous charge transfer with transition-metal compounds anchored to TiO2 semiconductor surfaces
    Ardo, Shane
    Meyer, Gerald J.
    [J]. CHEMICAL SOCIETY REVIEWS, 2009, 38 (01) : 115 - 164
  • [5] Non-Nernstian Two-Electron Transfer Photocatalysis at Metalloporphyrin-TiO2 Interfaces
    Ardo, Shane
    Achey, Darren
    Morris, Amanda J.
    Abrahamsson, Maria
    Meyer, Gerald J.
    [J]. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2011, 133 (41) : 16572 - 16580
  • [6] ENHANCED SPECTRAL SENSITIVITY FROM RUTHENIUM(II) POLYPYRIDYL BASED PHOTOVOLTAIC DEVICES
    ARGAZZI, R
    BIGNOZZI, CA
    HEIMER, TA
    CASTELLANO, FN
    MEYER, GJ
    [J]. INORGANIC CHEMISTRY, 1994, 33 (25) : 5741 - 5749
  • [7] Ultrafast electron transfer dynamics from molecular adsorbates to semiconductor nanocrystalline thin films
    Asbury, JB
    Hao, E
    Wang, YQ
    Ghosh, HN
    Lian, TQ
    [J]. JOURNAL OF PHYSICAL CHEMISTRY B, 2001, 105 (20) : 4545 - 4557
  • [8] Molecular Chromophore-Catalyst Assemblies for Solar Fuel Applications
    Ashford, Dennis L.
    Gish, Melissa K.
    Vannucci, Aaron K.
    Brennaman, M. Kyle
    Templeton, Joseph L.
    Papanikolas, John M.
    Meyer, Thomas J.
    [J]. CHEMICAL REVIEWS, 2015, 115 (23) : 13006 - 13049
  • [9] Varying the Electronic Structure of Surface-Bound Ruthenium(II) Polypyridyl Complexes
    Ashford, Dennis L.
    Brennaman, M. Kyle
    Brown, Robert J.
    Keinan, Shahar
    Concepcion, Javier J.
    Papanikolas, John M.
    Templeton, Joseph L.
    Meyer, Thomas J.
    [J]. INORGANIC CHEMISTRY, 2015, 54 (02) : 460 - 469
  • [10] Kinetic Evidence That the Solvent Barrier for Electron Transfer Is Absent in the Electric Double Layer
    Bangle, Rachel E.
    Schneider, Jenny
    Conroy, Daniel T.
    Aramburu-Troselj, Bruno M.
    Meyer, Gerald J.
    [J]. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2020, 142 (35) : 14940 - 14946