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The use of a ternary metal sulfide loading on carbon fibers as the sulfur host for high performance low-temperature lithium sulfur batteries
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作者 HE Xin ZUO Huai-yang +4 位作者 XIAO Ru QU Zhuo-yan SUN Zhen-hua WANG Bao Li Feng 《新型炭材料(中英文)》 北大核心 2025年第1期167-177,共11页
The use of lithium-sulfur(Li-S)batteries is limited by sulfur redox reactions involving multi-phase transformations,especially at low-temperatures.To address this issue,we report a material(FCNS@NCFs)consisting of nit... The use of lithium-sulfur(Li-S)batteries is limited by sulfur redox reactions involving multi-phase transformations,especially at low-temperatures.To address this issue,we report a material(FCNS@NCFs)consisting of nitrogen-doped carbon fibers loaded with a ternary metal sulf-ide((Fe,Co,Ni)_(9)S_(8))for use as the sulfur host in Li-S batteries.This materi-al was prepared using transfer blot filter paper as the carbon precursor,thiourea as the source of nitrogen and sulfur,and FeCl_(3)·6H_(2)O,CoCl_(2)·6H_(2)O and NiCl_(2)·6H_(2)O as the metal ion sources.It was synthesized by an impreg-nation method followed by calcination.The nitrogen doping significantly in-creased the conductivity of the host,and the metal sulfides have excellent catalytic activities.Theoretical calculations,and adsorption and deposition experiments show that active sites on the surface of FCNS@NCFs selectively adsorb polysulfides,facilitate rapid adsorption and conversion,prevent cathode passivation and inhib-it the polysulfide shuttling.The FCNS@NCFs used as the sulfur host has excellent electrochemical properties.Its initial dis-charge capacity is 1639.0 mAh g^(−1) at 0.2 C and room temperature,and it remains a capacity of 1255.1 mAh g^(−1) after 100 cycles.At−20~C,it has an initial discharge capacity of 1578.5 mAh g^(−1) at 0.2 C,with a capacity of 867.5 mAh g^(−1) after 100 cycles.Its excellent performance at both ambient and low temperatures suggests a new way to produce high-performance low-temper-ature Li-S batteries. 展开更多
关键词 Lithium sulfur batteries Low temperature Transition metal sulfides Sulfur conversion kinetics
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从宏观到超微观记录分子与原子的“一举一动”--材料界面与控制分论坛侧记
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作者 李同同 吴亭亭 章海霞 《中国材料进展》 CAS CSCD 北大核心 2018年第9期708-709,共2页
材料界面是材料组织的重要组成部分,它对能虽传递和物质输送起着重要作用。随着对半导体材料、纳米材料、生物材料、智能材料、复合材料、陶瓷材料、镁铝合金等材料研究的不断深入,材料界面超微观结构、成分与性能之间关系规律的问题日... 材料界面是材料组织的重要组成部分,它对能虽传递和物质输送起着重要作用。随着对半导体材料、纳米材料、生物材料、智能材料、复合材料、陶瓷材料、镁铝合金等材料研究的不断深入,材料界面超微观结构、成分与性能之间关系规律的问题日益凸显。随着材料科学向纳米结构尺度的发展,材料的宏观性能越来越依赖于原子尺度的超微观结构。因此,材料界面微观结构信息的提取对材料性能研究至关重要。高分辨电子显微术和分析电子显微术作为表征、检测材料超微观结构的里要手段,可以从分子、原子尺度上研究材料界面的超微观结构,从而揭示材料界面结构对性能的影响。 展开更多
关键词 材料界面 微观结构 宏观性能 原子尺度 分子 高分辨电子显微术 论坛 控制
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