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Templated spherical coassembly strategy to fabricate MoS_(2)/C hollow spheres with physical/chemical polysulfides trapping for lithium-sulfur batteries 被引量:1
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作者 Ting He Jiajia Ru +5 位作者 Yutong Feng dapeng bi Jiansheng Zhang Feng Gu Chi Zhang Jinhu Yang 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2022年第3期136-142,共7页
Rational design of advanced polar hosts with high sulfur loading,facilitated ionic/electronic transport and effectively suppressed shuttling effect has great potential for high performance lithium-sulfur batteries,yet... Rational design of advanced polar hosts with high sulfur loading,facilitated ionic/electronic transport and effectively suppressed shuttling effect has great potential for high performance lithium-sulfur batteries,yet it remains challenging.Here we propose a novel templated spherical coassembly strategy to fabricate the MoS_(2)/C hollow spheres as an efficient sulfur host material.The unique hollow structure provides enough interior space for accommodating a substantial amount of sulfur,and effectively suppresses the diffusion of dissolved polysulfides by both physical confinement and chemical adsorption.Moreover,the ionic transport as well as the ability to mitigate volume variation upon cycling is also improved,thereby maximizing the utilization of sulfur.Owing to these merits,when evaluated as a sulfur host for lithiumsulfur batteries,the MoS_(2)/C hollow spheres exhibit appealing electrochemical performance with an impressive specific capacity of 1082 mA hg^(-1)at 0.1 C,excellent rate capability and superior cycling stability with a low fading rate of 0.04%per cycle. 展开更多
关键词 Lithium-sulfur batteries Cathode MoS2/C hollow spheres Physical confinement Chemical adsorption
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