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Rich oxygen vacancies in confined heterostructured TiO2@In2S3 hybrid for boosting solar-driven CO2 reduction
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2024
Year
Materials ScienceOxygen Reduction ReactionChemical EngineeringEngineeringSolar PowerEnergy ConversionRich Oxygen VacanciesAdvanced Energy TechnologyEnergy StoragePhotocatalysisPhoto-electrochemical CellChemistrySolar-driven Co2 ReductionWater Splitting
| Year | Citations | |
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2019 | 1.2K | |
2022 | 444 | |
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2022 | 379 | |
2022 | 354 | |
2021 | 171 | |
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2023 | 158 | |
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2022 | 139 |
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