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Pitch-derived soft carbon composite with hard carbon fibers for high-rate and long-cycling K+storage
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作者 PENG Jiao wang Rui +3 位作者 JIN Jun HE Bei-bei GONG Yan-sheng wang huan-wen 《西北师范大学学报(自然科学版)》 CAS 2024年第6期53-62,I0003,共11页
Potassium-ion batteries(KIBs)have been seen as a competitive alternative to lithium-ion batteries(LIBs)due to their natural abundance,low cost and rocking chair-like operating mechanism similar to LIBs.Soft carbon has... Potassium-ion batteries(KIBs)have been seen as a competitive alternative to lithium-ion batteries(LIBs)due to their natural abundance,low cost and rocking chair-like operating mechanism similar to LIBs.Soft carbon has a lower voltage plateau compared to hard carbon and an easily modulated lattice structure compared to graphite,which provides particular advantages in KIBs anodes.Pitch has attracted much attention as a simple,readily available and inexpensive precursor for soft carbon,but its structure is easily damaged during cycling.Herein,the flexible film Pitch@CNF are prepared by uniformly winding reticulated carbon fibers on the surface of pitch-soft carbon via electrostatic spinning technique,which not only enables the pitch to maintain its structure well during cycling and withstand the volume expansion upon K+insertion,but also is conducive to ionic transport of the three-dimensional reticulated structure.Meanwhile,the abundant pores on the carbon fibers can provide more K+active sites.The prepared flexible self-supporting films can be used directly as electrodes without the addition of binders and conductive agents.The reversible capacity is 290 mAh·g^(-1)at a current density of 0.1 A·g^(-1),and the capacity retention rate is 83%after 500 cycles. 展开更多
关键词 soft carbon hard carbon potassium ion capacitors carbon fibers PITCH
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狄拉克量子材料中的输运理论进展
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作者 王焕文 付博 沈顺清 《物理学报》 SCIE EI CAS CSCD 北大核心 2023年第17期52-73,共22页
狄拉克量子材料具有独特的电子结构,可以用无质量和有质量的狄拉克方程描述.从奇异的量子流体到晶体材料的多种系统均已发现了狄拉克量子材料.由于其拓扑非平庸的能带结构,狄拉克量子材料表现出丰富有趣的输运现象,包括纵向负磁阻、量... 狄拉克量子材料具有独特的电子结构,可以用无质量和有质量的狄拉克方程描述.从奇异的量子流体到晶体材料的多种系统均已发现了狄拉克量子材料.由于其拓扑非平庸的能带结构,狄拉克量子材料表现出丰富有趣的输运现象,包括纵向负磁阻、量子干涉效应和螺旋磁效应等.本文介绍狄拉克量子材料输运理论最新进展,总结了基于狄拉克方程的相关量子输运理论和量子反常效应,重点关注有质量的狄拉克费米子和量子反常半金属,介绍了半磁拓扑绝缘体中宇称反常和半整数量子霍尔效应的实现. 展开更多
关键词 狄拉克量子材料 狄拉克方程 负磁阻 量子反常
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