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3篇 您的检索式:作者名="Alexandre Magasinski"
    题名 作者 年代 出处 被引量
1Harnessing Steric Separation of Freshly Nucleated Li<sub>2</sub>S Nanoparticles for Bottom‐Up Assembly of High‐Performance Cathodes for Lithium‐Sulfur and Lithium‐Ion Batteries显示文摘Feixiang Wu Hyea Kim Alexandre Magasinski Jung Tae Lee Huan‐Ting Lin Gleb Yushin 2014Adv Energy Mater2014,,11:1
2Comparative study of the solid electrolyte interphase on graphite in full Li-ion battery cells using X-ray photoelectron spectroscopy, secondary ion mass spectrometry, and electron microscopy显示文摘Jung Tae Lee Naoki Nitta James Benson Alexandre Magasinski Thomas F. Fuller Gleb Yushin 2013Carbon2013,,:1
3Heat-resistant Al_(2)O_(3) nanowire-polyetherimide separator for safer and faster lithium-ion batteries显示文摘Poor heat/flame-resistance of polyolefin(e.g.,polyethylene and polypropylene)separators and high flammability of organic electrolytes used in today’s lithium-ion batteries(LIBs)may trigger rare yet potentially catastrophic safety issues.Here,we mitigate this challenge by developing a heat-resistant and flame-retardant porous composite membrane composed of polyetherimide(PEI)and Al_(2)O_(3) nanowires(NWs).The membranes are fabricated based on an industrially scalable non-solvent-induced phase separation process,which results in an intimately interconnected porous network of Al_(2)O_(3) NWs and PEI.The produced composite membranes exhibit excellent flexibility,thermal stability,and flame-retardancy.Importantly,the composite membranes exhibit minimal thermal shrinkage and superior tensile strength(16 MPa)at temperatures as high as 200℃,significantly exceeding the performance of conventional polyolefin separators.Compared with commercial separators,their superior wettability and higher ionic conductivity(by up to 2.4 times)when filled with the same electrolyte,larger electrolyte uptake(-190 wt.%),as well as improved cycle and rate performance demonstrated in LiNiMnCoO_(2)(NCM)-based LIBs make them attractive choices for a variety of electrochemical energy storage devices.Wenqiang Hu Wenbin Fu Samik Jhulki Liang Chen Aashray Narla Zhijian Sun Fujia Wang Alexandre Magasinski Gleb Yushin 2023Journal of Materials Science & Technology2023,,11:0
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