Suppr超能文献

用于锂离子电池的具有核壳结构纳米纤维素-SiO纳米复合材料的多层隔膜

Multilayered separators with core-shell structured nanocellulose-SiO nanocomposites for lithium-ion batteries.

作者信息

Kim Hyeyun, Lee Chaeeun, Jo Jaemin, Yu Seonmyeong, Shin Sunghee, Hur Kahyun, Koo Bonwook, Kim Kwang Ho, Hwang Jinyeon

机构信息

Extreme Materials Research Center, Korea Institute of Science and Technology, Seoul 02792, Republic of Korea.

Energy Storage Research Center, Korea Institute of Science and Technology, Seoul 02792, Republic of Korea.

出版信息

Carbohydr Polym. 2025 Aug 15;362:123677. doi: 10.1016/j.carbpol.2025.123677. Epub 2025 Apr 29.

Abstract

Multilayered porous separators consisting of cellulose nanofibers (CNF) and SiO coating are fabricated for lithium-ion batteries (LIBs) as an eco-friendly alternative to conventional polyolefin separators. Employing a sol-gel synthesis method, SiO nanoparticles are intricately arranged on CNF to create core-shell structured CNF-SiO composites. Simple binder-free CNF-SiO surface coated composite separators are obtained via alternating sequential vacuum filtration of CNF suspensions and the nanocomposite coating functional layers, resulting in bi- and tri-layered separators. CNF entangled structure determines the pore architecture of CNF-SiO as a molecular template, while simultaneously tailoring the size distribution of pores and fibers within the separator, thus optimizing Li-ion transport pathways. By combining core-shell structured CNF-SiO nanocomposites as a functional layer with CNF separators, the resulting multilayer separators significantly improve the electrochemical stability of LIBs due to the effective suppression of electrolyte decomposition and dendrite growth on the Li metal surface. This approach simplifies material sourcing and production processes, making it particularly attractive for large-scale manufacturing for LIBs separators from carbohydrate precursors extracted from biomass. This study highlights the potential of chemically modified cellulose-based nanostructures as high-performing upcycled separators for energy storage, resulting in their possible commercial applications.

摘要

由纤维素纳米纤维(CNF)和SiO涂层组成的多层多孔隔膜被制备用于锂离子电池(LIB),作为传统聚烯烃隔膜的一种环保替代品。采用溶胶 - 凝胶合成方法,SiO纳米颗粒错综复杂地排列在CNF上,以形成核壳结构的CNF-SiO复合材料。通过交替顺序真空过滤CNF悬浮液和纳米复合涂层功能层,获得简单的无粘合剂CNF-SiO表面涂层复合隔膜,从而得到双层和三层隔膜。CNF缠结结构作为分子模板决定了CNF-SiO的孔结构,同时调整隔膜内孔和纤维的尺寸分布,从而优化锂离子传输路径。通过将核壳结构的CNF-SiO纳米复合材料作为功能层与CNF隔膜相结合,所得多层隔膜由于有效抑制了锂金属表面的电解质分解和枝晶生长,显著提高了LIB的电化学稳定性。这种方法简化了材料采购和生产过程,使其对于从生物质中提取的碳水化合物前体大规模制造LIB隔膜特别有吸引力。这项研究突出了化学改性纤维素基纳米结构作为高性能储能升级隔膜的潜力,从而使其具有可能的商业应用。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验