(2026). Interface‐Engineered Li–Ni–O/Ni Heterostructures With Tunable Vacancies on Biochar Enable Biomass‐to‐Hydrogen Conversion. Carbon Energy.
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Chicago Style (17th ed.) Citation
"Interface‐Engineered Li–Ni–O/Ni Heterostructures With Tunable Vacancies on Biochar Enable Biomass‐to‐Hydrogen Conversion."
Carbon Energy 2026.
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MLA (9th ed.) Citation
"Interface‐Engineered Li–Ni–O/Ni Heterostructures With Tunable Vacancies on Biochar Enable Biomass‐to‐Hydrogen Conversion."
Carbon Energy, 2026.
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Warning: These citations may not always be 100% accurate.