研究领域
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1. 人工光合作用集成器件与系统;
2. 绿氢和可再生合成燃料;
3. 化学储能与下一代电池技术;4. 废弃物资源化利用。
论文成果
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Efficient Hole Extraction and *OH Alleviation by Pd Nanoparticles on GaN Nanowires in Seawater for Solar-Driven H2 and H2O2 Generation..Angew. Chem. Int. Edit..2025:2025, In Press
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Solar Refinery: A Disruptive Strategy for Upcycling Plastic Wastes..Sci. China Chem..2025:2025, In Press
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GaN Nanowire-Supported NiOx for Low-Temperature and Durable Dry Reforming of Methane toward Syngas..Appl. Catal. B-Environ..2025,366
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Surface-Hydrogenated CrMnOx Coupled with GaN Nanowires for Light-Driven Bioethanol Dehydration to Ethylene..Nat. Commun. 2024 Accepted.2024
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An Integrated Photocatalytic Redox Architecture for Simultaneous Overall Conversion of CO2 and H2O toward CH4 and H2O2.Sci. Bull. 2024. In Press.2024
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Binary Iron-Manganese Cocatalyst for Simultaneous Activation of C-C and C-O Bonds to Maximally Utilize Lignin for Syngas Generation over InGaN.Angew. Chem. Int. Edit..2024:2024, DOI: 10.1002/anie.202413528.
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1-Dimensional Metal Nitride-Supported Platinum Nanoclusters for Low-Temperature Hydrogen Production from Formic Acid.Chem. Eng. J:2024, In Press
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双碳战略下绿色动力与数字技术融合驱动汽车产业高质量发展及其趋势展望..科学通报. 2024, In Press:2024, In Press
专利
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Au-In二元纳米助催化剂负载III族氮化物的制备方法及其应用. ZL 2022 1 1006633.4
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Rh纳米颗粒修饰III族氮化物Si催化剂的制备方法及其应用. ZL 2022 1 1005630.9
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Rh纳米颗粒修饰III族氮氧化物Si催化剂的制备方法及其应用. ZL 2022 1 1045142.0
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PHOTOCATALYTIC CO2 REDUCTION WITH CO-CATALYSTS-DECORATED NANOSTRUCTURES. PCT/US/2023/024569.
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CO2 REDUCTION TOWARD METHANE
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PHOTOCATALYTIC CO2 REDUCTION WITH BINARY CATALYST-DECORATED NANOSTRUCTURES. U.S. Patent Application No. 18/770,020.
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CO2 CONVERSION WITH NANOWIRE-NANOPARTICLE ARCHITECTURE. PCT/US2020/043449.
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NANOSTRUCTURED-BASED ATOMIC SCALE LECTROCHEMICAL REACTION CATALYSIS. PCT/US2021/050444.