Integrated photoelectrochemical energy storage: solar hydrogen generation and supercapacitor
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Summary
This study constructs an integrated photoelectrochemical device with simultaneous supercapacitor and hydrogen evolution functions based on TiO2/transition metal hydroxides/oxides core/shell nanorod arrays, and demonstrates the feasibility of solar-driven pseudocapacitance.
- Type
- article
- Published
- 2012-12-14
- Cited by
- 93
- References
- 34
- Access
- Open access
- OpenAlex
- https://openalex.org/W2000783102
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:23800497
Keywords
Pseudocapacitor, Supercapacitor, Materials science, Solar energy, Energy storage
References
- Review on modified TiO2 photocatalysis under UV/visible light: selected results and related mechanisms on interfacial charge carrier transfer dynamics.
- Photoelectrochemical cells
- Encyclopedia of Electrochemistry, Vol. 6: Semiconductor electrodes and Photoelectrochemistry
- Co3O4 Nanowire@MnO2 Ultrathin Nanosheet Core/Shell Arrays: A New Class of High‐Performance Pseudocapacitive Materials
- Oxidative energy storage ability of a TiO2-Ni(OH)2 bilayer photocatalyst.
- Solar water splitting cells.
- Hierarchically porous Co3O4 film with mesoporous walls prepared via liquid crystalline template for supercapacitor application
- Homogeneous Photosensitization of Complex TiO2 Nanostructures for Efficient Solar Energy Conversion
- Visible light-induced photocatalysts with reductive energy storage abilities
- Remote energy storage in Ni(OH)2 with TiO2 photocatalyst.
- Light energy storage and photoelectrochemical behavior of the titanate nanotube array/Ni(OH)2 electrode
- Bactericidal effect of an energy storage TiO2–WO3 photocatalyst in dark
- Ni(OH)2 nanoplates grown on graphene as advanced electrochemical pseudocapacitor materials.
- A REVIEW OF LARGE-SCALE SOLAR HEATING SYSTEMS IN EUROPE
- Semiconductor nanostructure-based photoelectrochemical water splitting: A brief review
- EFG crystal growth technology for low cost terrestrial photovoltaics: review and outlook
- A review of electrode materials for electrochemical supercapacitors.
- Metal hydride materials for solid hydrogen storage: a review
- Self-supported hydrothermal synthesized hollow Co3O4 nanowire arrays with high supercapacitor capacitance
- Materials for electrochemical capacitors.
Cited by
- Heterogeneous Nanostructures for Sodium Ion Batteries and Supercapacitors
- Three-dimensional NiCo2O4 nanowire arrays: preparation and storage behavior for flexible lithium-ion and sodium-ion batteries with improved electrochemical performance
- Preparation and capacitance properties of Mn-doped TiO2 nanotube arrays by anodisation of Ti–Mn alloy
- Photo‐Rechargeable Electric Energy Storage Systems
- Sensitive enzymatic glucose detection by TiO2 nanowire photoelectrochemical biosensors
- Coaxial hetero-nanostructures with controllable shell thickness: a “Pore Widening” method
- Memristor‐Integrated Voltage‐Stabilizing Supercapacitor System
- Thermoelectric generator device based on carbon nanotube membrane
- Water photolysis at 12.3% efficiency via perovskite photovoltaics and Earth-abundant catalysts
- Direct integration of a supercapacitor into the backside of a silicon photovoltaic device
- WO₃ nanoflakes for enhanced photoelectrochemical conversion.
- Bias-free, solar-charged electric double-layer capacitors.
- Improved photocatalytic activity of single crystal ZnO nanorod derived from highly effective P/N heterojunction
- Three‐Dimensional Structural Engineering for Energy‐Storage Devices: From Microscope to Macroscope
- Solar-Energy-Driven Photoelectrochemical Biosensing Using TiO2 Nanowires.
- Simultaneous etching and doping of TiO2 nanowire arrays for enhanced photoelectrochemical performance.
- A three-dimensional hierarchical Fe2O3@NiO core/shell nanorod array on carbon cloth: a new class of anode for high-performance lithium-ion batteries.
- Design Considerations for Unconventional Electrochemical Energy Storage Architectures
- Hierarchical silicon nanowires-carbon textiles matrix as a binder-free anode for high-performance advanced lithium-ion batteries
- Three‐Dimensional Self‐Supported Metal Oxides for Advanced Energy Storage
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