Integrating a redox-coupled dye-sensitized photoelectrode into a lithium–oxygen battery for photoassisted charging
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Summary
The use of a redox shuttle to couple a photoelectrode and an oxygen electrode offers a unique strategy to address the overpotential issue of non-aqueous lithium-oxygen batteries and also a distinct approach for integrating solar cells and batteries.
- Type
- article
- Published
- 2014-10-03
- Cited by
- 271
- References
- 31
- Access
- Open access
- OpenAlex
- https://openalex.org/W25277368
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:40229539
Keywords
Political science, Business
References
- Photoelectrochemical cells
- A low-cost, high-efficiency solar cell based on dye-sensitized colloidal TiO2 films
- A redox shuttle to facilitate oxygen reduction in the lithium air battery
- Determination of rate constants for charge transfer and the distribution of semiconductor and electrolyte electronic energy levels in dye-sensitized solar cells by open-circuit photovoltage decay method.
- Lithium−Air Battery: Promise and Challenges
- Non‐Aqueous and Hybrid Li‐O2 Batteries
- Novel DMSO-based electrolyte for high performance rechargeable Li-O2 batteries.
- Studies of Li-Air Cells Utilizing Dimethyl Sulfoxide-Based Electrolyte
- A Reversible and Higher-Rate Li-O2 Battery
- The discharge rate capability of rechargeable Li–O2 batteries
- Characteristics of the iodide/triiodide redox mediator in dye-sensitized solar cells.
- A Polymer Electrolyte‐Based Rechargeable Lithium/Oxygen Battery
- An improved high-performance lithium-air battery.
- The kinetics of complex formation between Ti(IV) and hydrogen peroxide
- Conversion of light to electricity by cis-X2bis(2,2'-bipyridyl-4,4'-dicarboxylate)ruthenium(II) charge-transfer sensitizers (X = Cl-, Br-, I-, CN-, and SCN-) on nanocrystalline titanium dioxide electrodes
- Towards photo-rechargeable textiles integrating power conversion and energy storage functions: can we kill two birds with one stone?
- An Integrated "energy wire" for both photoelectric conversion and energy storage.
- A Critical Review of Li/Air Batteries
- Superior rechargeability and efficiency of lithium-oxygen batteries: hierarchical air electrode architecture combined with a soluble catalyst.
- Conversion of sunlight to electric power by nanocrystalline dye-sensitized solar cells
Cited by
- Operando UV-visible spectroscopy evidence of the reactions of iodide as redox mediator in Li–O2 batteries
- Efficiently photo-charging lithium-ion battery by perovskite solar cell
- Saving electric energy by integrating a photoelectrode into a Li-ion battery
- On-chip energy storage integrated with solar cells using a laser scribed graphene oxide film
- Two better than one: cobalt–copper bimetallic yolk–shell nanoparticles supported on graphene as excellent cathode catalysts for Li–O2 batteries
- Reducing the charging voltage of a Li–O2 battery to 1.9 V by incorporating a photocatalyst
- Ultra-long electron lifetime induced efficient solar energy storage by an all-vanadium photoelectrochemical storage cell using methanesulfonic acid
- Mesoporous NiO with a single-crystalline structure utilized as a noble metal-free catalyst for non-aqueous Li–O2 batteries
- Recent Progress on Stability Enhancement for Cathode in Rechargeable Non‐Aqueous Lithium‐Oxygen Battery
- Ruthenium nanoparticles mounted on multielement co-doped graphene: an ultra-high-efficiency cathode catalyst for Li–O2 batteries
- Photovoltaics literature survey (No. 116)
- Inorganic & organic materials for rechargeable Li batteries with multi-electron reaction
- A New Perspective on Li-SO2 Batteries for Rechargeable Systems.
- Binder-free carbonized bacterial cellulose-supported ruthenium nanoparticles for Li-O2 batteries.
- Solar Rechargeable Batteries Based on Lead–Organohalide Electrolyte
- Enabling catalytic oxidation of Li2O2 at the liquid-solid interface: the evolution of an aprotic Li-O2 battery.
- Design Considerations for Unconventional Electrochemical Energy Storage Architectures
- Solar-powered electrochemical energy storage: an alternative to solar fuels
- Reduced free-standing Co3O4@Ni cathode for lithium–oxygen batteries with enhanced electrochemical performance
- A high energy density solar rechargeable redox battery
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