Material design and surface/interface engineering of photoelectrodes for solar water splitting
Y Hu, H Huang, J Feng, W Wang, H Guan, Z Li… - Solar …, 2021 - Wiley Online Library
Photoelectrochemical (PEC) water splitting can convert solar energy into clean and
renewable hydrogen energy, showing a promising application prospect. However, large …
renewable hydrogen energy, showing a promising application prospect. However, large …
Surface engineering of nanomaterials for photo‐electrochemical water splitting
B Yao, J Zhang, X Fan, J He, Y Li - Small, 2019 - Wiley Online Library
Photo‐electrochemical water splitting represents a green and environmentally friendly
method for producing solar hydrogen. Semiconductor nanomaterials with a highly …
method for producing solar hydrogen. Semiconductor nanomaterials with a highly …
Nano-architecture and material designs for water splitting photoelectrodes
This review concerns the efficient conversion of sunlight into chemical fuels through the
photoelectrochemical splitting of water, which has the potential to generate sustainable …
photoelectrochemical splitting of water, which has the potential to generate sustainable …
[引用][C] Photoelectrode for water splitting: Materials, fabrication and characterization
Photoelectorchemical (PEC) water splitting is an attractive approach for producing
sustainable and environment-friendly hydrogen. An efficient PEC process is rooted in …
sustainable and environment-friendly hydrogen. An efficient PEC process is rooted in …
Photoelectrochemical devices for solar water splitting–materials and challenges
It is widely accepted within the community that to achieve a sustainable society with an
energy mix primarily based on solar energy we need an efficient strategy to convert and …
energy mix primarily based on solar energy we need an efficient strategy to convert and …
Progress in designing effective photoelectrodes for solar water splitting
Photoelectrochemical (PEC) water splitting process is regarded as a promising route to
generate hydrogen by solar energy and at the heart of PEC is efficient electrode design …
generate hydrogen by solar energy and at the heart of PEC is efficient electrode design …
Novel integrated strategies toward efficient and stable unassisted photoelectrochemical water splitting
L Wang, W Si, X Hou, M Wang, X Liu, Y Ye… - Sustainable Materials …, 2020 - Elsevier
Unassisted photoelectrochemical (PEC) water splitting for hydrogen evolution has been
regarded as a sustainable route for the harvest and utilization of solar energy. To achieve …
regarded as a sustainable route for the harvest and utilization of solar energy. To achieve …
Light management in photoelectrochemical water splitting–from materials to device engineering
Y Chen, W Zheng, S Murcia-Lopez, F Lv… - Journal of Materials …, 2021 - pubs.rsc.org
Photoelectrochemical (PEC) water splitting is a very attractive approach to produce clean
hydrogen using abundant natural resources such as solar energy and (sea) water. As its …
hydrogen using abundant natural resources such as solar energy and (sea) water. As its …
Unconventional strategies to break through the efficiency of light‐driven water splitting: A review
Semiconductor‐based solar‐driven water splitting technology is an environmentally friendly
and cost‐effective approach for the production of clean fuels. The overall solar‐to‐hydrogen …
and cost‐effective approach for the production of clean fuels. The overall solar‐to‐hydrogen …
Morphology engineering of photoelectrodes for efficient photoelectrochemical water splitting
Photoelectrochemical solar water splitting is a promising method for harvesting clean and
sustainable solar energy by the carbon emission-free production of energy-rich hydrogen …
sustainable solar energy by the carbon emission-free production of energy-rich hydrogen …
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