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三维多孔石墨烯在高倍率超级电容器中的应用 被引量:1
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作者 张继国 赵宇 +2 位作者 臧孝贤 王补欢 马福元 《能源工程》 2020年第5期58-64,共7页
以商业化活性炭(AC)、活性炭-石墨烯复合材料(AC-GR)以及活性炭-三维多孔石墨烯复合材料(AC-3DGR)作为超级电容器电极材料,分别组装成扣式器件并进行性能对比测试,着重研究了3DGR对超级电容器倍率性能提升的影响。结果显示,在低倍率条件... 以商业化活性炭(AC)、活性炭-石墨烯复合材料(AC-GR)以及活性炭-三维多孔石墨烯复合材料(AC-3DGR)作为超级电容器电极材料,分别组装成扣式器件并进行性能对比测试,着重研究了3DGR对超级电容器倍率性能提升的影响。结果显示,在低倍率条件下(0.1 A/g),AC-3DGR扣式器件的比容量(19.98 C/g)与AC(20.68 C/g)接近,高于AC-GR的比容量(16.88 C/g);而在高倍率条件下(15 A/g),AC-3DGR扣式器件的比容量可达8.01 C/g,而AC器件的比容量仅为4.19 C/g,这归因于3DGR良好的孔道结构。AC-3DGR器件在不牺牲容量性能的前提下,提升了超级电容器的倍率性能,这为进一步优化三维多孔石墨烯基超级电容器提供了实验基础。 展开更多
关键词 超级电容器 石墨烯 三维多孔石墨烯 倍率性能
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Towards Fabrication of Atomic Dopant Wires via Monolayer Doping Patterned by Resist-Free Lithography
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作者 Chufan Zhang Ke Li +2 位作者 Xiaoxian Zang Fuyuan Ma Yaping Dan 《Chinese Physics Letters》 SCIE CAS CSCD 2021年第2期106-111,共6页
Fabrication of atomic dopant wires at large scale is challenging.We explored the feasibility to fabricate atomic dopant wires by nano-patterning self-assembled dopant carrying molecular monolayers via a resist-free li... Fabrication of atomic dopant wires at large scale is challenging.We explored the feasibility to fabricate atomic dopant wires by nano-patterning self-assembled dopant carrying molecular monolayers via a resist-free lithographic approach.The resist-free lithography is to use electron beam exposure to decompose hydrocarbon contaminants in vacuum chamber into amorphous carbon that serves as an etching mask for nanopatterning the phosphorus-bearing monolayers.Dopant wires were fabricated in silicon by patterning diethyl vinylphosphonate monolayers into lines with a width ranging from 1 μm down to 8 nm.The dopants were subsequently driven into silicon to form dopant wires by rapid thermal annealing.Electrical measurements show a linear correlation between wire width and conductance,indicating the success of the monolayer patterning process at nanoscale.The dopant wires can be potentially scaled down to atomic scale if the dopant thermal diffusion can be mitigated. 展开更多
关键词 DOPANT thermal AMORPHOUS
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