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Photoelectrocatalytic flow battery

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Integrating a dual-silicon photoelectrochemical cell into a redox flow

Here we report an efficient SRFC based on a dual-silicon photoelectrochemical cell and a quinone/bromine redox flow battery for in situ solar energy conversion and storage.

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The breakthrough in flow batteries: A step forward, but

Flow batteries are emerging as a transformative technology for large-scale energy storage, offering scalability and long-duration storage to

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The breakthrough in flow batteries: A step forward, but not a

Flow batteries are emerging as a transformative technology for large-scale energy storage, offering scalability and long-duration storage to address the intermittency of

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Integrating a dual-silicon photoelectrochemical cell into a redox

Here we report an efficient SRFC based on a dual-silicon photoelectrochemical cell and a quinone/bromine redox flow battery for in situ solar energy conversion and storage.

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TiO2 nanotube electrode for organic degradation coupled with flow

A photoelectrochemical (PEC) oxidation and flow-electrode capacitive deionization (FCDI) dual system was explored for the effective treatment of brackish water. Two anodic

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A Particle-Bonded Catalyst-Modified Electrode for Flow Batteries

Herein, a particle-bonded catalyst-modified electrode was proposed from the insight into interface behaviors of flow batteries, matching the demands of redox reactions and mass

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Journal of Energy Chemistry | Vol 54, Pages 1-830 (March 2021

Discover the latest articles in Journal of Energy Chemistry, featuring peer-reviewed research on energy chemistry advancements and applications. Explore cutting-edge scientific insights.

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Dual photoelectrodes activate oxygen evolution and oxygen

For practical applications, solar energy should be matched with batteries to realize its storage. To meet the intermittent feature of solar light, solar redox flow batteries [10], [11],

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Solar Energy Conversion and Storage Using a

The PFC-SC design can support the recent efforts for off-grid solar energy conversion and storage. To date, the most popular systems are the

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Dual photoelectrode-drived Fe–Br rechargeable flow battery for

This study presents a solar rechargeable flow battery (SRFB) that combines dual photoelectrodes (BiVO 4 or Mo–BiVO 4 as photoanode, polyterthiophene (pTTh) as

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Nanoporous WO3 grown on a 3D tungsten mesh by

Nanoporous WO3 grown on a 3D tungsten mesh by electrochemical anodization for enhanced photoelectrocatalytic degradation of tetracycline in a continuous flow reactor

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Breaking the photoelectrochemical activity-battery voltage trade

The carbon modified a-Si photoanode enables efficient photocharging of a high voltage pH-neutral TEMPO/quinone-based redox flow battery. The integrated solar redox flow

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Engineering the next generation of photorechargeable zinc-air batteries

Solar energy has been identified as one of the key building blocks of the future energy generation mix required to meet greenhouse gas emissions targets while leading the

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An efficient and stable solar flow battery enabled by a single

Solar flow batteries (SFBs) can convert, store and release intermittent solar energy but have been built with complex multi-junction solar cells.

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Towards the Configuration of a Photoelectrocatalytic Reactor:

This work aims to select a photoreactor flow configuration and operational conditions that maximize the Photocatalytic Space-time Yield in a photoelectrocatalytic reactor to degrade

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Photocatalytic, electrocatalytic and photoelectrocatalytic

CO2 emission is partly responsible for climate change induced by greenhouse effects. Carbon capture, utilization and storage is a major pathway to reduce CO2 emission.

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Synergistic photo/electrocatalysis for energy

Impressively, synergistic photo/electrocatalysis enables the simultaneous utilization of photo- and electrochemical energy, exhibiting

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Synergistic photo/electrocatalysis for energy conversion and

Impressively, synergistic photo/electrocatalysis enables the simultaneous utilization of photo- and electrochemical energy, exhibiting promising potential for facilitating or initiating

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Advanced (photo)electrocatalytic approaches to substitute the

The concept of solar flow batteries should now be introduced to further understand these possibilities. Integration of the PEC design into solar flow battery In PEC cells, solar energy is

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Recent progress in photoelectrocatalysis beyond water oxidation

Shi et al. summarize recent progress in photoelectrocatalytic hydrogen production, coupled with transformations of biomass, organics, and plastic wastes into value-added chemicals and

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Continuous Flow Photoelectrochemical Reactor with Gas

In this study, a gas-permeable photocathode in a continuous flow PEC reactor is incorporated, which facilitates the direct supply of CO 2 gas to the photocathode-electrolyte

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Photocatalysts designed using nuclear energy radioactive

The combination of nuclear energy technology and photocatalysts offers a potent solution to address pressing environmental and energy challenges. Nume

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Continuous Flow Photoelectrochemical Reactor with

In this study, a gas-permeable photocathode in a continuous flow PEC reactor is incorporated, which facilitates the direct supply of CO 2 gas to

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Electrophotocatalysis: Combining Light and Electricity

Visible-light photocatalysis and electrocatalysis are two powerful strategies for the promotion of chemical reactions that have received

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A photosynthetic cell-based energy material for flow battery

Our results illustrate that the fabricated particles improved the energy efficiency by facilitating the transfer of photosynthetic electrons to the electrodes, while maintaining the

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A Particle-Bonded Catalyst-Modified Electrode for

Herein, a particle-bonded catalyst-modified electrode was proposed from the insight into interface behaviors of flow batteries, matching the

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