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[1]Transparent, High-Performance and Stable Sb2S3 Photoanode Enabled by Heterojunction Engineering with Conjugated Polycarbazole Frameworks for Unbiased Photoelectrochemical Overall Water Splitting Devices. Adv. Mater. 2022, 34, 2200723.
[2]Stable Unbiased Photo-Electrochemical Overall Water Splitting Exceeding 3% Efficiency via Covalent Triazine Framework/Metal Oxide Hybrid Photoelectrodes. Adv. Mater. 2021, 33, 2008264.
[3]Reaction Pathways toward Sustainable Photosynthesis of Hydrogen Peroxide by Polymer Photocatalysts. Chem. Mater. 2022, 34, 4259.
[4]Acetylene and Diacetylene Functionalized Covalent Triazine Frameworks as Metal-Free Photocatalysts for Hydrogen Peroxide Production: A New Two-Electron Water Oxidation Pathway. Adv. Mater. 2020, 32, 1904433.
[5]Regulating Heterogeneous Catalysis of Gold Nanoparticles with Polymer Mechanochemistry. ACS Macro Lett. 2020, 9, 1192-1197.
[6]Acetylene and Diacetylene Functionalized Covalent Triazine Frameworks as Metal-Free Photocatalysts for Hydrogen Peroxide Production: A New Two-Electron Water Oxidation Pathway. Adv. Mater. 2020, 32, 1904433.
[7]Modulating Benzothiadiazole-Based Covalent Organic Frameworks via Halogenation for Enhanced Photocatalytic Water Splitting: Small Changes Make Big Differences. Angew. Chem. Int. Ed. 2020, 59, 16902-16909.
[8]Multilayer Polypyrrole Nanosheets with Self-Organized Surface Structures for Flexible and Efficient Solar-Thermal Energy Conversion. Adv. Mater. 2019, 31, 1807716.
[9]Amorphous Nickel-iron Oxides/Carbon Nanohybrids for an Efficient and Durable Oxygen Evolution Reaction. Nano Research 2017, 10, 3629-3637.
[10]Photocatalytic Oxygen Evolution from Low-Bandgap Conjugated Microporous Polymer Nanosheets: a Combined First-Principles Calculation and Experimental Study. Nanoscale 2017, 9, 4090-4096.
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Hangxun Xu
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