莫富年
近期热点
资料介绍
个人简历
发明专利1. An Electrical Energy Storage Device, an Electrolyte for Use in an Electrical Energy Storage Device, and a Method of Preparing the Device[P]. 2019. Priority No. 16/504,568.2. Low Temperature Operable Electrical Energy Supply Device[P]. 2018. Priority No. 16/223,246.3. Adaptable electrical component: U.S. Patent Application 15/980,854[P]. 2019-11-21.研究领域
1、高性能水系电池材料研究;2、柔性可穿戴的安全电化学能源器件设计开发。""近期论文
2021** Mo Funian, Wang Zifeng, Jiang Ruijuan, Gai Weiming, Li Qing, Lv Shuangkun, Zhi Chunyi. Energy-Dissipative Dual-Crosslinked Hydrogels for Dynamically Super-Tough Sensors. Science China Materials, 2021, Accepted. (IF=6.098)** Mo Funian, Li Qing, Liang Guojin, Zhao Yuwei, Wang Donghong, Huang Yan, Wei Jun, Zhi Chunyi. A Self-healing crease-free supramolecular all-polymer supercapacitor. Advanced Science, 2021, 2100072. (IF=15.840)** Liang Guojin, Mo Funian, Ji Xiulei, Zhi Chunyi. Non-metallic charge carriers for aqueous batteries. Nature Reviews Materials, 2021, 6(2): 109-123. (co-first author, IF=71.189)before 2021** Mo Funian, Liang Guojin, Zhi Chunyi. A flexible rechargeable aqueous zinc manganese-dioxide battery working at -20 °C. Energy & Environmental Science, 2019, 12(2): 706-715. (IF= 33.250)** Mo Funian, Liang Guojin, Zhi Chunyi. An Overview of Fiber‐Shaped Batteries with a Focus on Multifunctionality, Scalability, and Technical Difficulties. Advanced Materials, 2019, 1902151. (IF= 25.809)** Mo Funian, Chen Ze, Zhi Chunyi. Zwitterionic Sulfobetaine Hydrogel Electrolyte Building Separated Positive/Negative Ion Migration Channels for Aqueous Zn‐MnO2 Batteries with Superior Rate Capabilities. Advanced Energy Materials, 2020, 10(16): 2000035. (IF= 24.884)** Liang Guojin, Mo Funian, Zhi Chunyi. Commencing an Acidic Battery Based on a Copper Anode with Ultrafast Proton‐Regulated Kinetics and Superior Dendrite‐Free Property. Advanced Materials, 2019, 31(52): 1905873. (co-first author, IF=25.809)** Liang Guojin, Mo Funian, Zhi Chunyi. A Universal Principle to Design Reversible Aqueous Batteries Based on Deposition–Dissolution Mechanism. Advanced Energy Materials, 2019, 9(32): 1901838. (co-first author, IF=24.884)** Mo Funian, Li Hongfei, Zhi Chunyi. A smart safe rechargeable zinc ion battery based on sol-gel transition electrolytes. Science Bulletin, 2018, 63(16): 1077-1086. (IF= 9.511)** Liang Guojin, Mo Funian, Zhi Chunyi. Commencing mild Ag–Zn batteries with long-term stability and ultra-flat voltage platform. Energy Storage Materials, 2020, 25: 86-92. (co-first author, IF=16.28)** Mo Funian, Ban Jianfeng, Pan Lulu, et al. Liquid crystalline polyurethane composites based on supramolecular structure with reversible bidirectional shape memory and multi-shape memory effects. New Journal of Chemistry, 2019, 43(1): 103-110. (IF=3.069)** Mo Funian, Liang Guojin, Zhi Chunyi. Biomimetic organohydrogel electrolytes for high‐environmental adaptive energy storage devices. EcoMat, 2019, 1(1): e12008.** Mo Funian, Ren Huanhuan, Chen Shaojun, et al. Novel zwitterionic polyurethanes with good biocompatibility and antibacterial activity. Materials Letters, 2015, 145: 174-176. (IF=3.019)** Mo Funian, Zhou Faxing, Chen Shaojun, et al. Development of shape memory polyurethane based on polyethylene glycol and liquefied 4, 4′‐diphenylmethane diisocyanate using a bulk method for biomedical applications. Polymer International, 2015, 64(4): 477-485. (IF=2.433)标签: 材料科学与工程学院 哈尔滨工业大学(深圳)
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