论文著作:
2025
[1]. Regulating interphase chemistry by targeted functionalization of Hard carbon anode in ester-based electrolytes for high-performance sodium-ion batteries. Guangxiang Zhang, Chuankai Fu*, Shuyang Gao, Haoquan Zhao, Chi Ma, Ziwei Liu, Shuai Li, Zhijin Ju, Hua Huo, Pengjian Zuo, Geping Yin, Tiefeng Liu*, Yulin Ma*. Angew. Chem. Int. Edit. (IF=16.1,中科院一区), 2025.
[2]. All-climate and non-flammable electrolyte with strong anion-solvent interaction for high performance lithium metal batteries. Chi Ma#, Chuankai Fu#*, Sheng Chang, Xing Xu, Guangxiang Zhang, Ziwei Liu, Hua Huo, Lishuang Fan, Geping Yin, Yulin Ma*. ACS Energy Letter. (IF=19.3, 共一+通讯,中科院一区),2025.
2024
[1]. Intelligent dual-anode strategy for high performance lithium-ion batteries. Chuankai Fu, Hua Huo, Yulin Ma, Liguang Wang*, Geping Yin, Pengjian Zuo, Yunzhi Gao*. Device (Cell子刊), 2024.
[2]. Unveiling the structure and diffusion kinetics at the interface of PEO-LLZTO composite electrolyte in solid-state batteries. Xueyan Zhang, Shichao Cheng, Chuankai Fu*, Geping Yin, Pengjian Zuo, Liguang Wang*, Hua Huo*. Adv. Energy Mater. (IF=24.4,中科院一区), 2024.
[3]. Advancements and challenges in organic-inorganic composite solid electrolytes for all-solid-state lithium batteries. Xueyan Zhang, Shichao Cheng, Chuankai Fu*, Geping Yin, Liguang Wang*, Yongmin Wu*, Hua Huo*. Nano-Micro Lett. (IF=31.6,中科院一区), 2024.
[4]. Recent advances and practical challenges of high-energy-density flexible lithium-ion batteries. Guangxiang Zhang, Xin Chen, Yulin Ma, Hua Huo, Pengjian Zuo, Geping Yin, Yunzhi Gao*, Chuankai Fu*. Front. Chem. Sci. Eng. (IF=4.3,中科院三区), 2024.
2023
[1]. Regulating micro-phase structure in plastic crystal gel polymer electrolyte for quasi-solid-state lithium metal batteries. Chuankai Fu, Xu Zhang, Hua Huo, Jiaming Zhu, Huifang Xu, Liguang Wang*, Yulin Ma*, Yunzhi Gao, Geping Yin, Pengjian Zuo*, Jun Lu*. Adv. Funct. Mater. (IF=18.5,中科院一区), 2023.
[2]. Recent advances of silicon-based solid-state lithium-ion batteries. Xin Chen#, Chuankai Fu#*, Yuanheng Wang, Jiaxin Yan, Yulin Ma, Hua Huo, Pengjian Zuo*, Geping Yin, Yunzhi Gao*. eTansportation (IF=15,共一+通讯,中科院一区), 2023.
[3]. Novel PEO-based composite electrolyte for low-temperature all-solid-state lithium metal batteries enabled by interfacial cation-assistance. Xueyan Zhang, Chuankai Fu*, Shichao Cheng, Chunbo Zhang, Licao Zhang, Meng Jiang, Jiajun Wang, Yulin Ma, Pengjian Zuo, Chunyu Du, Yunzhi Gao, Geping Yin, Hua Huo*. Energy Storage Mater. (IF=18.9,中科院一区), 2023. (ESI高被引)
[4]. Anion-derived cathode interface engineering enables ether-based electrolytes for sodium-ion batteries. Guangxiang Zhang, Chi Ma, Chuankai Fu*, Ziwei Liu, Haoquan Zhao, Meng Chen, Qingmo Shi, Hua Huo, Pengjian Zuo, Geping Yin, Yulin Ma*. Chem. Eng. J. (IF=13.3,中科院一区), 2023.
[5]. Stabilizing electrode-electrolyte interface for high-performance SiOx anode by dual electrolyte additive. Renlong Li, Binghan Cui, Qingjie Zhou, Xue Mu, Yunzhi Gao, Geping Yin, Chuankai Fu*, Pengjian Zuo*. J. Energy Chem. (IF=14,中科院一区), 2023.
[6]. Solvation structure reorganization and interface regulation of poly (glycidyl POSS)-based electrolyte for quasi-solid-state lithium-ion batteries. Qingjie Zhou, Jiyuan Jian, Cong Kang, Weichao Tang, Wei Zhao, Yuanheng Wang, Jiaxin Yan, Chuankai Fu*, Hua Huo, Pengjian Zuo*. Nano Energy (IF=16.8,中科院一区), 2023.
2022
[1]. Molecular bridges stabilize lithium metal anode and solid-state electrolyte interface. Chuankai Fu#, Xu Zhang#, Can Cui, Xueyan Zhang, Shuaifeng Lou, Yulin Ma*, Hua Huo, Yunzhi Gao*, Pengjian Zuo*, Geping Yin. Chem. Eng. J. (IF=13.3,中科院一区), 2022.
[2]. Poly (vinyl ethylene carbonate)-based dual-salt Gel polymer electrolyte enabling high voltage lithium metal batteries. Qingjie Zhou, Chuankai Fu*, Renlong Li, Xueyan Zhang, Bingxing Xie, Yunzhi Gao, Geping Yin, Pengjian Zuo*. Chem. Eng. J. (IF=13.3,中科院一区), 2022.
[3]. High performance SiOx anode enabled by AlCl3-MgSO4 assisted low-temperature etching for lithium-ion batteries. Xue Mu, Chuankai Fu*, Renlong Li, Chunyu Du, Yunzhi Gao, Geping Yin, Pengjian Zuo*. J. Power Sources (IF=8.1,中科院二区), 2022.
[4]. Constructing highly stable solid electrolyte interphase for Si@Graphene anodes by coupling 2-Isocyanatoethyl methacrylate and fluoroethylene carbonate. Renlong Li, Chuankai Fu*, Binghan Cui, Can Cui, Xue Mu, Yunzhi Gao, Geping Yin, Pengjian Zuo*. J. Power Sources (IF=8.1,中科院二区), 2022.
2021
[1]. In-situ thermal polymerization boosts succinonitrile-based composite solid-state electrolyte for high performance Li-metal battery. Chuankai Fu, Yulin Ma*, Pengjian Zuo, Wei Zhao, Weichao Tang, Geping Yin, Jiajun Wang, Yunzhi Gao*. J. Power Sources (IF=8.1,中科院二区), 2021.
[2]. Stable lithium anode enabled by biphasic hybrid SEI layer toward high-performance lithium metal batteries. Can Cui, Rupeng Zhang, Chuankai Fu*, Rang Xiao, Renlong Li, Yulin Ma, Jiajun Wang, Yunzhi Gao, Geping Yin, Pengjian Zuo*. Chem. Eng. J. (IF=13.3,中科院一区), 2021.
[3]. An armor-like artificial solid electrolyte interphase layer for high performance lithium-sulfur batteries. Can Cui, Rupeng Zhang, Chuankai Fu*, Baoyu Sun, Yang Wang, Hua Huo, Yulin Ma, Yunzhi Gao, Geping Yin, Pengjian Zuo*. Appl. Mater. Today (IF=7.2,中科院二区), 2021.
[4]. Stabilizing lithium metal anode enabled by a natural polymer layer for lithium–sulfur batteries. Can Cui, Rupeng Zhang, Chuankai Fu*, Bingxing Xie, Chunyu Du, Jiajun Wang, Yunzhi Gao, Geping Yin, Pengjian Zuo*. ACS Appl. Mater. Inter. (IF=8.3,中科院二区), 2021.
2018-2020
[1]. Capacity degradation mechanism and improvement actions for 4 V-class all-solid-state lithium-metal polymer batteries. Chuankai Fu, Shuaifeng Lou*, Xing Xu, Can Cui, Can Li, Pengjian Zuo, Yulin Ma*, Geping Yin, Yunzhi Gao*. Chem. Eng. J. (IF=13.3,中科院一区), 2020.
[2]. A dual-salt coupled fluoroethylene carbonate succinonitrile-based electrolyte enables Li-metal batteries. Chuankai Fu, Yulin Ma*, Shuaifeng Lou, Can Cui, Lizhi Xiang, Wei Zhao, Pengjian Zuo, Jiajun Wang, Yunzhi Gao*, Geping Yin. J. Mater. Chem. A. (IF=10.7,中科院二区), 2020.
[3]. Excellent room-temperature performance of lithium metal polymer battery with enhanced interfacial compatibility. Chuankai Fu, Shuaifeng Lou, Yi Cao, Yulin Ma*, Chunyu Du, Pengjian Zuo, Xinqun Cheng, Weiping Tang, Yongmin Wu, Yunzhi Gao*, Hua Huo, Geping Yin. Electrochim. Acta. (IF=5.5,中科院三区), 2018.
发明专利:
[1]. 付传凯, 马驰, 陈友驰, 梅悦旎, 王可, 马玉林, 一种宽温域深共晶电解液及其制备方法和应用. 专利号: ZL2024105071543.
[2]. 付传凯, 王兴宇, 吕俊慶, 张广相, 左朋建, 一种局部高浓度钠离子电池电解液. 专利号: ZL2022116246152.
[3]. 付传凯, 张广相, 马玉林, 左朋建, 高云智, 赵伟, 李素丽, 徐延铭, 一种硫化物固态电解质复合固态正极及固态电池. 专利号: ZL2022113875311.
[4]. 付传凯, 张广相, 马玉林, 高云智, 左朋建, 一种复合固态电解质及其制备方法. 专利号: ZL2022111925335.
[5]. 高云智, 付传凯, 张旭, 李权, 一种无负极碱金属离子电池中负极集流体的改性方法. 专利号: ZL2021110040556.
[6]. 高云智, 付传凯, 左朋建, 马玉林, 一种固态电池复合正极及其制备方法. 专利号: ZL2020112319899.
[7]. 高云智, 付传凯, 马玉林, 李素丽, 赵伟, 徐延铭, 一种耦合有机锂盐和氟代碳酸乙烯酯的丁二腈基电解液、制备方法及其应用. 专利号: ZL201911349741X.
[8]. 高云智, 付传凯, 马玉林, 一种高电压型复合固态正极及其制备方法和包含该正极的全固态电池及其制备方法. 专利号: ZL2018114094093.
[9]. 高云智, 付传凯, 李琴, 张瀚, 曹毅全固态锂离子电池及其制备方法. 专利号: ZL2015105182265.
[10]. 高云智, 付会珍, 付传凯, 吴李斌, 赵伟, 徐延铭, 一种用硅烷偶联剂对石墨材料表面进行改性的方法和锂离子电池负极及其制备方法. 专利号: ZL201911025691X.
[11]. 高云智, 吴李斌, 付传凯, 一种具有固液相转化机制的无枝晶合金负极及其制备方法. 专利号: ZL2021105184406.
[12]. 高云智, 田宇, 付传凯, 曹毅, 吴李斌, 吴勇民, 汤卫平, 新型电解质复合方式的固态锂电池及其制备方法. 专利号: ZL2018101189127.
[13]. 高云智, 孙震, 曹毅, 付传凯, 田宇, 一种利用偶联剂对电池正极材料表面进行修饰的方法. 专利号: ZL2018101078815.
[14]. 高云智, 曹毅, 李琴, 付传凯, 王龙, 铝空气电池循环过滤系统及方法. 专利号: ZL2015105775491.
[15]. 尹鸽平, 董生伟, 娄帅锋, 木天胜, 付传凯, 一种无添加剂的宽温域、高电压锂离子电池离子液体电解液及其制备方法与应用. 专利号: ZL2022110214181.