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A review on electrospun carbon-based materials for lithium-ion capacitors
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作者 ZHANG Qian yao shu-yu +5 位作者 LI Chen AN Ya-bin SUN Xian-zhong WANG Kai ZHANG Xiong MA Yan-wei 《新型炭材料(中英文)》 北大核心 2025年第4期782-821,共40页
In the context of rapid economic development,the pursuit of sustainable energy solutions has become a major challenge.Lithium-ion capacitors(LICs),which integrate the high energy density of lithium-ion batteries with ... In the context of rapid economic development,the pursuit of sustainable energy solutions has become a major challenge.Lithium-ion capacitors(LICs),which integrate the high energy density of lithium-ion batteries with the high power density of supercapacitors,have emerged as promising candidates.However,challenges such as poor capacity matching and limited energy density still hinder their practical application.Carbon nanofibers(CNFs),with their high specific surface area,excellent electrical conductivity,mechanical flexibility,and strong compatibility with active materials,are regarded as ideal electrode frameworks for LICs.This review summarizes key strategies to improve the electrochemical performance of CNF-based LICs,including structural engineering,heteroatom doping,and hybridization with transition metal oxides.The underlying mechanisms of each approach are discussed in detail,with a focus on their roles in improving capacitance,energy density,and cycling stability.This review aims to provide insights into material design and guide future research toward high-performance LICs for next-generation energy storage applications. 展开更多
关键词 Lithium-ion capacitors Carbon nanofibers ELECTROSPINNING Energy density Power density
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单相氟磷灰石微晶玻璃晶相特征和生物相容性研究 被引量:1
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作者 崔健 姚树玉 韩野 《人工晶体学报》 EI CAS 北大核心 2019年第2期207-212,218,共7页
采用熔融-淬火-烧结法制备氟磷灰石微晶玻璃,研究其析晶机制和体外生物相容性。采用X射线衍射(XRD)和场发射扫描电镜(FE-SEM)分析了不同烧结温度下样品的晶相组成和微观结构,利用能量色散X射线光谱仪(EDS)分析了化学成分。结果表明,氟... 采用熔融-淬火-烧结法制备氟磷灰石微晶玻璃,研究其析晶机制和体外生物相容性。采用X射线衍射(XRD)和场发射扫描电镜(FE-SEM)分析了不同烧结温度下样品的晶相组成和微观结构,利用能量色散X射线光谱仪(EDS)分析了化学成分。结果表明,氟磷灰石是烧结微晶玻璃中的唯一晶相,其晶体可以在较宽的温度范围内析出。显微组织结构致密,显微硬度为644~709 Hv0. 1。氟磷灰石晶体在FE-SEM中有针状和多边形两种形态,多边形是短棒状晶体的横断面。低温下,以固相烧结为主,氟磷灰石析晶以表面析晶为主,晶体生长为针形;高温下玻璃液较多,在保温和冷却凝固过程中析出短棒状晶。在37℃温度下将样品在模拟体液中浸泡14 d,SEM/EDS和FT-IR检测结果表明,样品表面包含磷酸根和羟基的吸收带,形成了羟基磷灰石层,可作为骨或牙齿修复材料。 展开更多
关键词 氟磷灰石 微晶玻璃 烧结 析晶机制 生物相容性
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