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A review of the use of electrospinning in the preparation of flexible lithium-ion batteries
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作者 XING Jia-yi ZHANG Yu-zhuo +1 位作者 FENG Shu-xin JI Ke-meng 《新型炭材料(中英文)》 北大核心 2025年第2期270-292,共23页
Electrospinning technology has emerged as a promising method for fabricating flexible lithium-ion batter-ies(FLIBs)due to its ability to create materials with desir-able properties for energy storage applications.FLIB... Electrospinning technology has emerged as a promising method for fabricating flexible lithium-ion batter-ies(FLIBs)due to its ability to create materials with desir-able properties for energy storage applications.FLIBs,which are foldable and have high energy densities,are be-coming increasingly important as power sources for wear-able devices,flexible electronics,and mobile energy applica-tions.Carbon materials,especially carbon nanofibers,are pivotal in improving the performance of FLIBs by increas-ing electrical conductivity,chemical stability,and surface area,as well as reducing costs.These materials also play a significant role in establishing conducting networks and im-proving structural integrity,which are essential for extend-ing the cycle life and enhancing the safety of the batteries.This review considers the role of electrospinning in the fabrication of critical FLIB components,with a particular emphasis on the integration of carbon materials.It explores strategies to optimize FLIB performance by fine-tuning the electrospinning para-meters,such as electric field strength,spinning rate,solution concentration,and carbonization process.Precise control over fiber properties is crucial for enhancing battery reliability and stability during folding and bending.It also highlights the latest research findings in carbon-based electrode materials,high-performance electrolytes,and separator structures,discussing the practical challenges and opportunities these materials present.It underscores the significant impact of carbon materials on the evolution of FLIBs and their potential to shape future energy storage technologies. 展开更多
关键词 Electrospinning technology Flexible lithium-ion batteries(FLIBs) Carbon material application Nanofiber electrodes Electrochemical energy storage and conversion
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二维金属有机框架纳米片的合成及在超电容和电催化领域的应用 被引量:10
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作者 万月 宋美娜 赵美廷 《高等学校化学学报》 SCIE EI CAS CSCD 北大核心 2021年第2期575-594,共20页
二维金属有机框架(2D MOF)纳米片具有丰富且易暴露的表面活性位点、高度有序的孔结构以及多样且可调的化学成分,在电化学能量存储与转化中有利于降低反应电位,提高扩散速率和反应速率.关于2DMOF应用于电化学存储与转化的研究已有大量报... 二维金属有机框架(2D MOF)纳米片具有丰富且易暴露的表面活性位点、高度有序的孔结构以及多样且可调的化学成分,在电化学能量存储与转化中有利于降低反应电位,提高扩散速率和反应速率.关于2DMOF应用于电化学存储与转化的研究已有大量报道.本文综合评述了近几年2D MOF的合成进展及其在超电容(SC)、析氧反应(OER)、析氢反应(HER)、氧还原反应(ORR)和二氧化碳还原反应(CRR)的应用,并对2D MOF作为电催化材料的研究现状和发展前景进行了总结与展望. 展开更多
关键词 金属有机框架 二维纳米材料 电化学存储与转化
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