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5篇 您的检索式:作者名="XueW"
    题名 作者 年代 出处 被引量
1EssentialdruginChinaintotheeraofelectronicsupervision[J]显示文摘XUEW 中国医院院长0,,:1
2Anoncogenomics-basedinvivoRNAiscreenidentifiestumorsuppressorsinlivercancer显示文摘ZenderL XueW ZuberJ etal 2008Cell2008,135,5:1
3CRISPR-mediated direct mutation of cancer genes in the mouse liver显示文摘XueW Chen S Yin H 2014Nature2014,614,7522:1
4Corrosion behaviors and galvanic studies of micro arc oxidation films on A1-Zn-Mg- Cu alloy 显示文摘XUEW WANG C TIANH 2007Surf Coat Technol2007,201,:1
5Superfast and solvent-free core-shell assembly of sulfur/carbon active particles by hail-inspired nanostorm technology for high-energy-density Li-S batteries显示文摘The demand on low-carbon emission fabrication technologies for energy storage materials is increasing dramatically with the global interest on carbon neutrality.As a promising active material for metal-sulfur batteries,sulfur is of great interest due to its high-energy-density and abundance.However,there is a lack of industry-friendly and low-carbon fabrication strategies for high-performance sulfur-based active particles,which,however,is in critical need by their practical success.Herein,based on a hail-inspired sulfur nano-storm(HSN)technology developed in our lab,we report an energy-saving,solvent-free strategy for producing core-shell sulfur/carbon electrode particles(CNT@AC-S)in minutes.The fabrication of the CNT@AC-S electrode particles only involves low-cost sulfur blocks,commercial carbon nanotubes(CNT)and activated carbon(AC)micro-particles with high specific surface area.Based on the above core-shell CNT@AC-S particles,sulfur cathode with a high sulfur-loading of 9.2 mg cm^(-2) delivers a stable area capacity of 6.6 mAh cm^(-2) over 100 cycles.Furthermore,even for sulfur cathode with a super-high sulfur content(72 wt%over the whole electrode),it still delivers a high area capacity of 9 mAh cm^(-2) over50 cycles in a quasi-lean electrolyte condition.In a nutshell,this study brings a green and industryfriendly fabrication strategy for cost-effective production of rationally designed S-rich electrode particles.Lanxiang Feng Zhiwei Zhu Yan He Yuan Ji Xuewe He Lei Jing Mingbo Yang Wei Yang Yu Wang 2022Journal of Energy Chemistry2022,31,2:0
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