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作 者:Yan-Qi Feng Qiong-Qiong Lu Hui Liu
机构地区:[1]School of Materials&Environment Engineering,Chengdu Technological University,Chengdu 611730,China [2]School of Materials Science and Engineering,Shaanxi Key Laboratory of Green Preparation and Functionalization for Inorganic Materials,Shaanxi University of Science and Technology,Xi'an 710021,China [3]Institute of Materials,Henan Key Laboratory of Advanced Conductor Materials,Henan Academy of Sciences,Zhengzhou 450046,China [4]Institute of Materials Chemistry,Leibniz Institute for Solid State and Materials Research(IFW)Dresden e.V.,Dresden 01069,Germany
出 处:《Tungsten》2024年第3期536-543,共8页钨科技(英文)
基 金:the financial supports from the Joint Fund of Henan Province Science and Technology R&D Program(225200810093);the Startup Research of Henan Academy of Sciences(231817001);financially supports from the National Natural Science Foundation of China(51272147);the Natural Science Foundation of Shaanxi Province(2015JM5208);the Graduate Innovation Found of Shaanxi University of Science and Technology and Scientific Research Project of Chengdu Technological University(2023RC001);supported by the National Key R&D Program of China(2019YFC1520100)。
摘 要:Advanced energy storage systems are in urgent need nowadays due to the rising demand in mobile devices and electric vehicles[1].Lithium–sulfur(Li–S)batteries are intensively studied due to the high theoretical specific capacity(1675 m Ah·g^(-1))and energy density(2600 Wh·kg^(-1)),as well as natural abundant and environmentally friendly of sulfur.
分 类 号:TB306[一般工业技术—材料科学与工程] TM912[电气工程—电力电子与电力传动]
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