Wei Huang

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2014-2017 Shandong University, Jinan Shi, Shandong Sheng, China 
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"Wei Huang"
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Wang F, Li A, Huang W, et al. (2024) La-doped Porous Fe2O3 Nanorods as Advanced Anodes for Lithium/Sodium Ion Batteries and Sulfur Host for Li-Sulfur Batteries. Chemphyschem : a European Journal of Chemical Physics and Physical Chemistry. e202300657
Yu P, Xing J, Tang J, et al. (2024) Polyethyleneimine-modified iron-doped birnessite as a highly stable adsorbent for efficient arsenic removal. Journal of Colloid and Interface Science. 661: 164-174
Chong S, Qiao S, Wei X, et al. (2021) SbS-based conversion-alloying dual mechanism anode for potassium-ion batteries. Iscience. 24: 103494
Chong S, Yuan L, Li T, et al. (2021) Nitrogen and Oxygen Co-Doped Porous Hard Carbon Nanospheres with Core-Shell Architecture as Anode Materials for Superior Potassium-Ion Storage. Small (Weinheim An Der Bergstrasse, Germany). e2104296
Xie Y, Cao J, Wang X, et al. (2021) MOF-Derived Bifunctional CoSe Nanoparticles Embedded in N-Doped Carbon Nanosheet Arrays as Efficient Sulfur Hosts for Lithium-Sulfur Batteries. Nano Letters
Diao F, Huang W, Ctistis G, et al. (2021) Bifunctional and Self-Supported NiFeP-Layer-Coated NiP Rods for Electrochemical Water Splitting in Alkaline Solution. Acs Applied Materials & Interfaces
Chong S, Wei X, Wu Y, et al. (2021) Expanded MoSe Nanosheets Vertically Bonded on Reduced Graphene Oxide for Sodium and Potassium-Ion Storage. Acs Applied Materials & Interfaces
Liu L, Sun J, Du Z, et al. (2020) High-performance sodium-ion anodes enabled by a low-temperature molten salt approach. Chemical Communications (Cambridge, England)
Tang J, Yan X, Huang W, et al. (2020) Bilirubin oxidase oriented on novel type three-dimensional biocathodes with reduced graphene aggregation for biocathode. Biosensors & Bioelectronics. 167: 112500
Huang W, Zheng X, Shangguan H, et al. (2020) Microwave assisted crystalline and morphology evolution of flower-like Fe2O3@ iron doped K-birnessite composite and its application for lithium ion storage Applied Surface Science. 525: 146513
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