Solar Water Splitting Cells
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November 2010 |
Powering the planet: Chemical challenges in solar energy utilization
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October 2006 |
Modeling, Simulation, and Implementation of Solar-Driven Water-Splitting Devices
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October 2016 |
An analysis of the optimal band gaps of light absorbers in integrated tandem photoelectrochemical water-splitting systems
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January 2013 |
Developing a scalable artificial photosynthesis technology through nanomaterials by design
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December 2016 |
Tin Oxide as a Protective Heterojunction with Silicon for Efficient Photoelectrochemical Water Oxidation in Strongly Acidic or Alkaline Electrolytes
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July 2018 |
Conformal SnO x heterojunction coatings for stabilized photoelectrochemical water oxidation using arrays of silicon microcones
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January 2020 |
Stable Solar-Driven Water Oxidation to O 2 (g) by Ni-Oxide-Coated Silicon Photoanodes
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January 2015 |
Amorphous TiO2 coatings stabilize Si, GaAs, and GaP photoanodes for efficient water oxidation
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May 2014 |
Direct solar-to-hydrogen conversion via inverted metamorphic multi-junction semiconductor architectures
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March 2017 |
Wafer-Scale Fabrication of Self-Catalyzed 1.7 eV GaAsP Core–Shell Nanowire Photocathode on Silicon Substrates
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March 2014 |
Sputtered NiO x Films for Stabilization of p + n-InP Photoanodes for Solar-Driven Water Oxidation
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March 2015 |
Failure modes of protection layers produced by atomic layer deposition of amorphous TiO 2 on GaAs anodes
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January 2020 |
A monolithically integrated, intrinsically safe, 10% efficient, solar-driven water-splitting system based on active, stable earth-abundant electrocatalysts in conjunction with tandem III–V light absorbers protected by amorphous TiO 2 films
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January 2015 |
Investigations of the stability of GaAs for photoelectrochemical H 2 evolution in acidic or alkaline aqueous electrolytes
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January 2021 |
High Efficiency Inverted GaAs and GaInP/GaAs Solar Cells With Strain‐Balanced GaInAs/GaAsP Quantum Wells
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December 2020 |
Comparison of single junction AlGaInP and GaInP solar cells grown by molecular beam epitaxy
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March 2015 |
A Monolithic Photovoltaic-Photoelectrochemical Device for Hydrogen Production via Water Splitting
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April 1998 |
Monolithic Photoelectrochemical Device for Direct Water Splitting with 19% Efficiency
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June 2018 |
The stability of illuminated p-GaInP2 semiconductor photoelectrode
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October 2012 |
Photoelectrochemical reduction of nitrates at the illuminated p-GaInP 2 photoelectrode
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January 2013 |
Electrochemical Stability of p-GaInP[sub 2] in Aqueous Electrolytes Toward Photoelectrochemical Water Splitting
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January 1998 |
Water reduction by a p-GaInP2 photoelectrode stabilized by an amorphous TiO2 coating and a molecular cobalt catalyst
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December 2015 |
A graded catalytic–protective layer for an efficient and stable water-splitting photocathode
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January 2017 |
High performance III-V photoelectrodes for solar water splitting via synergistically tailored structure and stoichiometry
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July 2019 |
Addressing the Stability Gap in Photoelectrochemistry: Molybdenum Disulfide Protective Catalysts for Tandem III–V Unassisted Solar Water Splitting
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July 2020 |
Highly efficient and durable III–V semiconductor-catalyst photocathodes via a transparent protection layer
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January 2020 |
Protection of GaInP 2 Photocathodes by Direct Photoelectrodeposition of MoS x Thin Films
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June 2019 |
Molybdenum Disulfide as a Protection Layer and Catalyst for Gallium Indium Phosphide Solar Water Splitting Photocathodes
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May 2016 |
Efficient direct solar-to-hydrogen conversion by in situ interface transformation of a tandem structure
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September 2015 |
Investigations of the stability of etched or platinized p-InP(100) photocathodes for solar-driven hydrogen evolution in acidic or alkaline aqueous electrolytes
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January 2021 |
A New Inlet System for Differential Electrochemical Mass Spectroscopy Applied to the Photocorrosion of p-InP(111) Single Crystals
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January 1998 |
Hydrogen Evolution from Pt/Ru-Coated p-Type WSe 2 Photocathodes
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December 2012 |
Hydrogen Evolution with Minimal Parasitic Light Absorption by Dense Co–P Catalyst Films on Structured p-Si Photocathodes
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February 2018 |
Comparison between the measured and modeled hydrogen-evolution activity of Ni- or Pt-coated silicon photocathodes
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September 2014 |
On the origin of the photocurrent of electrochemically passivated p-InP(100) photoelectrodes
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January 2018 |
Characterization of some ternary III-V semiconductor/electrolyte interfaces utilizing electrochemical impedance spectroscopy
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October 1993 |
The role of the anion electronegativity in semiconductor–electrolyte and semiconductor–metal junctions
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April 1984 |
Displacement of the Bandedges of GaInP[sub 2] in Aqueous Electrolytes Induced by Surface Modification
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January 1995 |
Phosphonic Acid Modification of GaInP 2 Photocathodes Toward Unbiased Photoelectrochemical Water Splitting
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May 2015 |
Impedance analysis of surface modified Ga0.5In0.5P—aqueous electrolyte interface
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May 1996 |
Suppression of Band Edge Migration at the p-GaInP 2 /H 2 O Interface under Illumination via Catalysis
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July 2000 |
Electrolytic decomposition and photodecomposition of compound semiconductors in contact with electrolytes
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July 1978 |
Thermodynamic Potential for the Anodic Dissolution of n-Type Semiconductors
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January 1977 |
Benchmarking Hydrogen Evolving Reaction and Oxygen Evolving Reaction Electrocatalysts for Solar Water Splitting Devices
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March 2015 |
Adaptive semiconductor/electrocatalyst junctions in water-splitting photoanodes
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December 2013 |
Semiconductor–Electrocatalyst Interfaces: Theory, Experiment, and Applications in Photoelectrochemical Water Splitting
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April 2016 |
Unified defect model and beyond
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September 1980 |
The advanced unified defect model for Schottky barrier formation
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July 1988 |
570 mV photovoltage, stabilized n-Si/CoO x heterojunction photoanodes fabricated using atomic layer deposition
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January 2016 |
Phosphine Functionalization of GaAs(111)A Surfaces
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November 2008 |
High-Resolution X-ray Photoelectron Spectroscopy of Chlorine-Terminated GaAs(111)A Surfaces
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August 2006 |