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Nature Communications|November 23, 2021
A durable and pH-universal self-standing MoC-Mo<sub>2</sub>C heterojunction electrode for efficient hydrogen evolution reactionWei Liu, Xiting Wang, Fan Wang, et al.Nano Letters|December 27, 2021
Electrochemical Growth of High-Strength Carbon Nanocoils in Molten CarbonatesRui Yu, Junxiang Xiang, Kaifa Du, et al.ACS Applied Materials & Interfaces|June 24, 2021
Fabricating Silicon Nanotubes by Electrochemical Exfoliation and Reduction of Layer-Structured CaSiO<sub>3</sub> in Molten SaltFan Wang, Wei Liu, Yongsong Ma, et al.Journal of Hazardous Materials|August 4, 2023
Recovery of valuable metals from spent lithium-ion batteries through biomass pyrolysis gas-induced reductionFengyin Zhou, Xiangyun Li, Shiyu Wang, et al.ACS Applied Materials & Interfaces|June 1, 2026
Mechanoelectrolysis of Sulfides: Modulating Sulfide-to-Metal ConversionsYanyang Guo, Shiyu Wang, Jiakang Qu, et al.Journal of Biomedical Materials Research. Part A|August 16, 2013
A new implant with solid core and porous surface: the biocompatability with boneXu Yang, Dihua Wang, Youde Liang, et al.Waste Management (New York, N.Y.)|August 27, 2019
Recovery and regeneration of LiCoO<sub>2</sub>-based spent lithium-ion batteries by a carbothermic reduction vacuum pyrolysis approach: Controlling the recovery of CoO or CoYiqi Tang, Hongwei Xie, Beilei Zhang, et al.Environmental Science & Technology|July 2, 2014
Harvesting capacitive carbon by carbonization of waste biomass in molten saltsHuayi Yin, Beihu Lu, Yin Xu, et al.Environmental Science & Technology|September 10, 2024
Coupling Electrochemical Leaching with Solvent Extraction for Recycling Spent Lithium-Ion BatteriesJingjing Zhao, Fengyin Zhou, Hongya Wang, et al.Nature Communications|July 31, 2024
Waste plastics upcycled for high-efficiency H<sub>2</sub>O<sub>2</sub> production and lithium recovery via Ni-Co/carbon nanotubes compositesBaolong Qiu, Mengjie Liu, Xin Qu, et al.Pageof 5