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Accordion Frameworks Enable Free-Standing,High Si Content Anode for Li-ion Batteries
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作者 Zedong Zhao Lei Dong +8 位作者 Qin Huang Tianqi Wu Fugang Zhao Yixuan Guo Bo Hu yuanhang ge Jiajia Zhang Keyu Xie Hongbin Lu 《Energy & Environmental Materials》 SCIE EI CAS CSCD 2023年第5期281-287,共7页
Implementing high-performance silicon(Si)anode in actual processing and application is highly desirable for next-generation,high-energy Li-ion batteries.However,high content of inactive matrix(including conductive age... Implementing high-performance silicon(Si)anode in actual processing and application is highly desirable for next-generation,high-energy Li-ion batteries.However,high content of inactive matrix(including conductive agent and binder)is often indispensable in order to ensure local conductivity and suppress pulverization tendency of Si particles,which thus cause great capacity loss based on the mass of whole electrode.Here,we designed an accordion-structured,high-performance electrode with high Si content up to 95%.Si nanoparticles were well anchored into the interlayer spacings of accordion-like graphene arrays,and free-standing electrode was prepared via a simple filtration process without any binder.Conductive accordion framework ensures strong confinement effect of Si nanoparticles and also provides direct,non-tortuous channels for fast electrochemical reaction kinetics.As a consequence,the accordion Si electrodes exhibit ultrahigh,electrode-based capacities up to 3149 mAh g^(-1)(under Si content of 91%),as well as long-term stability.Also,the accordion electrode can bear extreme condition of over-lithiation and maintains stable in full-cell test.This design provides a significant stride in high Si content toward realistic,high-performance electrodes. 展开更多
关键词 ACCORDION ANODE FREE-STANDING high Si content HIGH-PERFORMANCE
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具备大层间距、高度周期性类似手风琴的氧化石墨烯框架用于制备交替排列的二维异质结构
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作者 阮英波 赵泽栋 +5 位作者 葛远航 胡波 李梦雄 董雷 张佳佳 卢红斌 《Science China Materials》 SCIE EI CAS CSCD 2021年第6期1457-1467,共11页
二维异质结构在集成材料设计中具有广阔的应用前景,但目前的合成策略用于多层异质结构构建和大规模生产时仍面临着诸多挑战.本论文报导了一种基于非剥离层状氧化石墨烯(LGO)的主客体策略,以构建由多层交替排列的石墨烯和金属氧化物纳米... 二维异质结构在集成材料设计中具有广阔的应用前景,但目前的合成策略用于多层异质结构构建和大规模生产时仍面临着诸多挑战.本论文报导了一种基于非剥离层状氧化石墨烯(LGO)的主客体策略,以构建由多层交替排列的石墨烯和金属氧化物纳米片组成的石墨烯基异质结构.二维排列的氧化石墨烯和开放的层内空间使LGO成为构建周期性二维宿主框架的理想平台.聚醚胺低聚物被用来共价连接相邻的氧化石墨烯.伸长的分子链构象使制得的手风琴石墨烯框架具有良好的结构稳定性、周期性和超大的层间空间.开放、排列良好的二维通道与客体材料金属离子前驱体的高度亲和性,可限域合成各种高质量的二维石墨烯基异质结构.此外,进一步通过去除石墨烯骨架,还可以制备各种剥离的超薄氧化物纳米片.本工作中提出的灵活可调的层间化学,为合成一系列高质量石墨烯-无机/有机二维异质结构提供了新思路. 展开更多
关键词 2D heterostructures alternately aligned accordionlike graphene oxide frameworks d-spacing metal oxide nanosheets
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