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相关机构:清华大学北京理工大学哈尔滨工业大学陕西师范大学更多>>
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Enhancing the long-term Na-storage cyclability of conversion-type iron selenide composite by construction of 3D inherited hyperbranched polymer buffering matrix
《Nano Research》2021年第11期3952-3960,共9页Hao Li Changchun Hu Yaping Xia Ting Li Daohong Zhang Fei Xu 
We gratefully acknowledge the financial support of Hubei Provincial Natural Science Foundation(Nos.2019CFB620 and 2019CFB452);Innovation group of Hubei Natural Science Foundation(No.2018CFA023);the Fundamental Research Funds for the Central Universities,South-Central University for Nationalities(No.CZY20022).
Electrochemical conversion reactions provide more selections for Na-storage materials, but the reaction suffers from low reversibility and poor cyclability. Introducing an electrochemically inactive component is a com...
关键词:Na-ion batteries conversion materials hyperbranched polymer iron selenide chemical interaction 
A combination of hierarchical pore and buffering layer construction for ultrastable nanocluster Si/SiO_(x)anode被引量:2
《Nano Research》2020年第11期2987-2993,共7页Kun Zeng Tong Li Xianying Qin Gemeng Liang Lihan Zhang Qi Liu Baohua Li Feiyu Kang 
supported by the National Natural Science Foundation of China(No.51872157);Shenzhen Technical Plan Project(Nos.JCYJ20170817161753629 and JCYJ20180508152135822);the Shenzhen Graphene Manufacturing Innovation Center(No.201901161513);Shenzhen Key Lab of Security Research of Power Batteries(No.ZDSYS201707271615073);Guangdong Technical Plan Project(Nos.2015TX01N011 and 2017B090907005);Local Innovative and Research Teams Project of Guangdong Pearl River Talents Program(No.2017BT01N111);the Special Fund Project for Strategic Emerging Industry Development of Shenzhen(No.20170428145209110).
Porous Si can be synthesized from diverse silica(SiO_(2))via magnesiothermic reduction technology and widely employed as potential anode material in lithium ion batteries.However,concerns regarding the influence of re...
关键词:highly-porous Si/SiO_(x)anodes magnesiothermic reduction lithium ion battery 
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