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用于长寿命无枝晶锂金属电池的具有高热稳定性和拉伸强度的细菌纤维素-二氧化硅-聚氧化乙烯复合固体聚合物电解质。

High thermal stability and tensile-strength bacterial cellulose-silica-PEO composite solid polymer electrolyte for long-life and dendrite-free lithium metal batteries.

作者信息

Hong Hwichan, Park Seungman, Hwang Seon Jae, Bae Minjun, Kim Yonghwan, An Won Young, Park Yongyeol, Kim Dohyeong, Chang Yujin, Piao Yuanzhe

机构信息

Graduate School of Convergence Science and Technology, Seoul National University 145 Gwanggyo-ro, Yeongtong-gu Suwon-Si Gyeonggi-do 16229 Republic of Korea

Advanced Institutes of Convergence Technology 145 Gwanggyo-ro, Yeongtong-gu Suwon-si Gyeonggi-do 16229 Republic of Korea.

出版信息

RSC Adv. 2025 Jun 11;15(25):19741-19750. doi: 10.1039/d5ra02218e. eCollection 2025 Jun 10.

Abstract

The increasing demand for high-energy-density and safe energy storage systems has driven the advancement of solid-state lithium metal batteries (LMBs). However, conventional liquid electrolytes face serious challenges such as dendrite growth, low thermal stability, and flammability, which limit their practical application. Solid polymer electrolytes (SPEs) have emerged as promising alternatives due to their improved safety and flexibility, but they still suffer from low ionic conductivity and insufficient mechanical and thermal robustness. In this study, we report a novel SPE composed of SiO-coated bacterial cellulose and polyethylene oxide (BC/PEO@SiO), synthesized a facile and cost-effective sol-gel method. The incorporation of SiO-coated BC nanofibers significantly enhanced the composite's mechanical strength and thermal resistance, achieving a nearly sevenfold increase in tensile strength compared to neat PEO. Moreover, the membrane maintained its structural integrity even at 150 °C. Electrochemical testing confirmed the excellent performance of the BC/PEO@SiO as a SPE. The Li|BC/PEO@SiO|Li symmetric cell maintained stable lithium plating and stripping behavior for over 700 hours, indicating superior interfacial stability. Furthermore, the LFP|BC/PEO@SiO|Li full cell exhibited a high reversible capacity of 113 mA h g and retained 94% of its initial capacity after 200 cycles. These results demonstrate that BC/PEO@SiO is a promising and scalable SPE platform for next-generation, safe and high-performance solid-state lithium batteries.

摘要

对高能量密度和安全储能系统日益增长的需求推动了固态锂金属电池(LMB)的发展。然而,传统的液体电解质面临着诸如枝晶生长、低热稳定性和易燃性等严峻挑战,这限制了它们的实际应用。固体聚合物电解质(SPE)因其安全性和柔韧性的提高而成为有前景的替代品,但它们仍然存在离子电导率低以及机械和热稳定性不足的问题。在本研究中,我们报道了一种由二氧化硅包覆的细菌纤维素和聚环氧乙烷(BC/PEO@SiO)组成的新型SPE,采用简便且经济高效的溶胶 - 凝胶法合成。二氧化硅包覆的BC纳米纤维的加入显著提高了复合材料的机械强度和耐热性,与纯PEO相比,拉伸强度提高了近七倍。此外,该膜即使在150°C时仍能保持其结构完整性。电化学测试证实了BC/PEO@SiO作为SPE的优异性能。Li|BC/PEO@SiO|Li对称电池在700多个小时内保持稳定的锂电镀和剥离行为,表明具有优异的界面稳定性。此外,LFP|BC/PEO@SiO|Li全电池表现出113 mA h g的高可逆容量,在200次循环后保留了其初始容量的94%。这些结果表明,BC/PEO@SiO是用于下一代安全高性能固态锂电池的有前景且可扩展的SPE平台。

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