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嘉宾预告丨博粤新材 首席技术顾问/中南大学工程学院 副院长 吴壮志将在2025起点固态电池行业年会发表主题演讲
起点锂电· 2025-11-01 01:37
Core Viewpoint - The article highlights the upcoming 2025 Solid-State Battery Industry Annual Conference and the Solid-State Battery Golden Award Ceremony, emphasizing the importance of new technologies and collaborative ecosystems in the solid-state battery sector [1]. Group 1: Event Details - The 2025 Solid-State Battery Industry Annual Conference will be held on November 8, 2025, at the Guangzhou Nansha International Convention Center [1]. - The event will coincide with the CINE Solid-State Battery Exhibition and CINE Sodium Battery Exhibition from November 6 to 8, 2025 [1]. - Shenzhen Boyue New Materials Technology Co., Ltd. will participate in the conference, with Chief Technical Advisor Wu Zhuangzhi delivering a speech on the development of sulfide solid electrolytes and their applications in all-solid-state batteries [1]. Group 2: Company Overview - Shenzhen Boyue New Materials Technology Co., Ltd. specializes in the research, production, and sales of advanced performance battery materials and is a technology transfer company of Central South University [5]. - The company has established production bases in Hunan and Guangdong, with plans for a lithium oxide production line with a capacity of thousands of tons, an oxide solid electrolyte production line with a capacity of tens of thousands of tons, and a pilot line for lithium sulfide and sulfide solid electrolytes with a capacity of hundreds of tons [5]. Group 3: Product Offerings - The main products include lithium oxide as a cathode lithium supplement, with customizable particle sizes and a purity of up to 99.5% [7][8]. - The oxide solid electrolyte (LATP) has an ionic conductivity of up to 1 mS/cm, good dispersion, uniform slurry, and high stability, with customizable particle sizes [8]. - The lithium sulfide/sulfide solid electrolyte is produced with a low-cost method, achieving a purity of up to 99.9%, with significantly optimized hydrogen sulfide release and air stability, and customizable particle sizes [9].