IntroductionDr. Qi Shengli is now working as a professor at Beijing University of Chemical Technology. His major is Materials Science and his research interests focus on high-performance and functional polyimide-based materials, including molecular design and surface-metallization of polyimide, developing polyimide cathode, functional polyimide adhesive and polyimide separator for lithium ion batteries, and polyimide aerogel. Up to now, he has already published over 100 papers, got over 50 patents issued and finished one book named “High-Performance Polyimide Fibers and the Application”. 2015 – Present, Professor, College of Materials Science and Engineering, Beijing University of Chemical Technology,China. 2012 –2014, Associate Professor, College of Materials Science and Engineering, Beijing University of Chemical Technology,China. 2009 –2011, JSPS Postdoctoral Researcher, Faculty of Engineering, Nagoya University, Japan. 2008 –2011, Lecturer, College of Materials Science and Engineering, Beijing University of Chemical Technology, China.EducationWork ExperienceSocial PositionSocial ActivitiesResearchHigh-performance and functional polyimide materials 1. Design and Synthesis of Functional Polyimide as Electrode Binders for Lithium Ion Battery 2. Preparation of High-performance Polyimide-Based Nano-Aerogel 3. Polyimide-Based Nanofiber Materials:Preparation, Surface functionalization and Application 4. Multi-scale Molecular Simulation of Polyimide 5. Surface Metallization of Polyimide Materials TeachingPolymer Physics Frontiers of Advanced Materials Engineering PostgraduatesFundingVertical ProjectHorizontal ProjectPublications(1) Xue Qicheng, Dong Nanxi, Fan Peiqi, Lin Daolei*, Tian Guofeng, Liu Jun, Wei Jiaming*, Qi Shengli*, Wu Dezhen. Binary-Network structured PI@SiO2 nanofibrous composite aerogels with temperature invariant superelasticity for thermal insulation. Chemical Engineering Journal (Chem Eng J), 2024, 152424. (2) Wang Zhaoyi, Liu Fangzhou, Li Xiaogang, Liu Bingxue, Lin Daolei*, Tian Guofeng, Qi Shengli*, and Wu Dezhen. Dual-functional Separators Regulating Ion Transport Enabled by 3DReinforced Polyimide Microspheres Protective Layer for DendriteFree and High-Temperature Lithium Metal Batteries. ACS Applied Materials & Interfaces (ACS Appl Mater Interfaces), 2024,16(18):23826-23837. (3) Kang Yongjun, Dong Nanxi, Liu Fangzhou, Lin Daolei*, Liu Bingxue, Tian Guofeng, Qi Shengli*, Wu Dezhen. Constructing high-toughness polyimide binder with robust polarity and ion-conductive mechanisms ensuring long-term operational stability of silicon-based anodes. Journal of Energy Chemistry (J Energy Chem), 2024,93:580-591. (4) Li Xiaogang, Liu Kefan, Dong Nanxi, Liu Bingxue, Tian Guofeng, Qi Shengli*, Wu Dezhen*. A dendrite-blocking polyimide-meta-aramid separator with ultrahigh strength and thermostability for high-security lithium-ion battery. Chemical Engineering Journal (Chem Eng J), 2024, 481: 148525. (5) Wang Yali, Dong Nanxi, Liu Bingxue, Tian Guofeng, Qi Shengli*, Wu Dezhen. Self-adaptive Gel Poly(imide-siloxane) Binder Ensuring Stable Cathode-Electrolyte Interface for Achieving High-Performance NCM811 Cathode in Lithium-ion Batteries. Energy Storage Materials (Energy Storage Mater), 2023, 56:621-630. (6) Xu Yueming, Wang Yali, Dong Nanxi, Pu Chuanzhi, Liu Bingxue, Tian Guofeng, Qi Shengli*, Wu Dezhen*. Novel Polyimide Binder for Achieving High-Rate Capability and Long-Term Cycling Stability of LiNi0.8Co0.1Mn0.1O2 Cathode Via Constructing Polar and Micro-Branched Crosslinking Network Structure. Journal of Energy Chemistry (J Energy Chem), 2023, 76:19-31. (7) Wang Yali, Dong Nanxi, Liu Bingxue, Qi Kexin, Tian Guofeng, Qi Shengli*, Wu Dezhen. Enhanced Electrochemical Performance of the LiNi0.8Co0.1Mn0.1O2 Cathode Via In-Situ Nanoscale Surface Modification with Poly(Imide-Siloxane) Binder. Chemical Engineering Journal (Chem Eng J), 2022, 450:137959(1-10). (8) Wang Yali, Qi Kexin, Dong Nanxi, Liu Bingxue, Tian Guofeng, Qi Shengli*, Wu Dezhen. Surface Modification Enabling 4.7 V Nickel-Rich Layered Cathode with Superior Long-Term Cyclability Via Novel Functional Polyimide Binders. Journal of Power Sources (J Power Sources), 2022, 545: 231927(1-11). (9) Qi Kexin, Wang Yali, Dong Nanxi, Liu Bingxue, Tian Guofeng, Qi Shengli*, Wu Dezhen. Novel polyimide binders integrated with soft and hard functional segments ensuring long-term high-voltage operating stability of high-energy NCM811 lithium-ion batteries up to 4.5 V. Applied Energy (Appl Energy), 2022, 320: 119282(1-14). (10) Yu Junfeng, Dong Nanxi, Liu Bingxue, Tian Guofeng, Qi Shengli*, Wu Dezhen. A Newly-Developed Heat-Resistance Polyimide Microsphere Coating to Enhance the Thermal Stability of Commercial Polyolefin Separators for Advanced Lithium-Ion Battery. Chemical Engineering Journal (Chem Eng J), 2022, 442(2):136314. AwardsPatentHonor RewardAdmissions Information |