Double‐Side Si Photoelectrode Enabled by Chemical Passivation for Photoelectrochemical Hydrogen and Oxygen Evolution Reactions
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- Type
- article
- Published
- 2020-10-07
- Cited by
- 39
- References
- 54
- OpenAlex
- https://openalex.org/W3091790338
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:225120116
Keywords
Passivation, Materials science, Photocurrent, Water splitting, Diffusion
References
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- Laser fired back contact for silicon solar cells
- Sunlight absorption in water – efficiency and design implications for photoelectrochemical devices
- Ultrathin films on copper(I) oxide water splitting photocathodes: a study on performance and stability
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- Single-Crystal Semiconductors with Narrow Band Gaps for Solar Water Splitting.
- Field-effect passivation on silicon nanowire solar cells
- Surface passivation of high‐efficiency silicon solar cells by atomic‐layer‐deposited Al2O3
- High-rate atomic layer deposition of Al2O3 for the surface passivation of Si solar cells
- Economic feasibility of bifacial silicon solar cells
- Engineering Cobalt Phosphide (CoP) Thin Film Catalysts for Enhanced Hydrogen Evolution Activity on Silicon Photocathodes
- Analysis of the Annual Performance of Bifacial Modules and Optimization Methods
Cited by
- Enabling Solar Hydrogen Production over Selenium: Surface State Passivation and Cocatalyst Decoration
- Unassisted Photoelectrochemical Cell with Multimediator Modulation for Solar Water Splitting Exceeding 4% Solar-to-Hydrogen Efficiency.
- High‐Performance Si Photocathode Enabled by Spatial Decoupling Multifunctional Layers for Water Splitting
- Strategies To Construct n-Type Si-Based Heterojunctions for Photoelectrochemical Water Oxidation
- Bifunctional doped transition metal CoSSeNi–Pt/C for efficient electrochemical water splitting
- Hydrogen production from offshore wind power in South China
- Insights into the Enhanced Photoelectrochemical Performance through Construction of the Z-Scheme and Type II Heterojunctions.
- Recent advancements in bismuth vanadate photoanodes for photoelectrochemical water splitting
- Effective Charge Carrier Utilization of BiVO4 for Solar Overall Water Splitting.
- A n-Si/CoOx/Ni:CoOOH photoanode producing 600 mV photovoltage for efficient photoelectrochemical water splitting
- Back-illuminated photoelectrochemical flow cell for efficient CO2 reduction
- Scaling-Up of Thin-Film Photoelectrodes for Solar Water Splitting Based on Atomic Layer Deposition.
- A review of non-oxide semiconductors for photoelectrochemical water splitting
- Earth-Abundant Photoelectrodes for Water Splitting and Alternate Oxidation Reactions: Recent Advances and Future Perspectives
- 5.7% Efficiency Si Photoanodes for Solar Water Splitting Catalyzed by Vertically Grown and Oxygen‐Vacancy‐Rich NiFe Hydroxides
- Tandem cells for unbiased photoelectrochemical water splitting.
- External catalyst-free InGaN photoelectrode for highly efficient energy conversion and H2 generation
- Highly selective photoelectrochemical CO2 reduction by crystal phase-modulated nanocrystals without parasitic absorption
- Decoupled Crystallization and Particle Growth of BiVO4 via Rapid Thermal Process for Enhanced Charge Separation
- A silicon photoanode protected with TiO2/stainless steel bilayer stack for solar seawater splitting
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