Hongmin Wang, Ph. D

Affiliations: 
2016-2021 Chemistry Washington University, Saint Louis, St. Louis, MO 
 2021- Chemistry Yale University, New Haven, CT 
Area:
Energy conversion and storage, Nanoscience, Materials Chemistry
Google:
"https://scholar.google.co.in/citations?user=jm3_GNIAAAAJ&hl=en"
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Publications

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Fu S, Wang H, Zhong Y, et al. (2023) High Mass Loading Li-S Batteries Catalytically Activated by Cerium Oxide: Performance and Failure Analysis under Lean Electrolyte Conditions. Advanced Materials (Deerfield Beach, Fla.). e2302771
Wang H, Fu S, Shang B, et al. (2023) Solar-Driven CO2 Conversion via Optimized Photothermal Catalysis in a Lotus Pod Structure. Angewandte Chemie (International Ed. in English). e202305251
Lu Y, Yang H, Diao Y, et al. (2023) Solution-Processable PEDOT Particles for Coatings of Untreated 3D-Printed Thermoplastics. Acs Applied Materials & Interfaces. 15: 3433-3441
Wang H, Yang H, Woon R, et al. (2021) Microtubular PEDOT-Coated Bricks for Atmospheric Water Harvesting. Acs Applied Materials & Interfaces
Wang H, Yang H, Diao Y, et al. (2021) Solid-State Precursor Impregnation for Enhanced Capacitance in Hierarchical Flexible Poly(3,4-Ethylenedioxythiophene) Supercapacitors. Acs Nano
Wang H, Diao Y, Lu Y, et al. (2020) Energy storing bricks for stationary PEDOT supercapacitors. Nature Communications. 11: 3882
Diao Y, Lu Y, Yang H, et al. (2020) Microsupercapacitors: Direct Conversion of Fe 2 O 3 to 3D Nanofibrillar PEDOT Microsupercapacitors (Adv. Funct. Mater. 32/2020) Advanced Functional Materials. 30: 2070217
Diao Y, Lu Y, Yang H, et al. (2020) Direct Conversion of Fe 2 O 3 to 3D Nanofibrillar PEDOT Microsupercapacitors Advanced Functional Materials. 30: 2003394
Lu Y, Kacica C, Bansal S, et al. (2019) Synthesis of Submicron PEDOT Particles of High Electrical Conductivity via Continuous Aerosol Vapor Polymerization. Acs Applied Materials & Interfaces
Santino LM, Diao Y, Yang H, et al. (2019) Vapor/liquid polymerization of ultraporous transparent and capacitive polypyrrole nanonets. Nanoscale
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