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5篇 您的检索式:作者名="Chen Dazhu"
    题名 作者 年代 出处 被引量
1Monitoring the Curing Process of Epoxy Resin Nanocomposites Based on Organo-montmorillonite-a New Aapplication of Resin Curemeter显示文摘Chen Dazhu He Pingsheng 2004Composites Science and Technology2004,64,16:1
2Behavior of polyamidoamine dendrimers as curing agents in bis-phenol an epoxy resin systems 显示文摘Cheng Yiyun Chen Dazhu Fu Rongqiang He Pingsheng 2005Polymer International2005,54,3:1
3Taurine May Prevent Diabetic Rats from Developing Cardiomyopathy also by Downregulating Angiotensin II Type2 Receptor Expression显示文摘Changyun Li Linsheng Cao Qiutang Zeng Xiaoqing Liu Yanzhou Zhang Tianran Dai Dongnan Hu Kai Huang Yong Wang Xiang Wang Dazhu Li Zhijian Chen Jiaming Zhang Yushu Li Ranjit Sharma 2005Cardiovascular Drugs and Therapy2005,,2:1
4Effects of different kinds of clay and different vinyl acetate content on the morphology and properties of EVA/clay nanocomposites 显示文摘ZHANG Weian CHEN Dazhu ZHAO Quanbao 2003Polymer2003,44,26:1
5Tailored architecture of composite electrolyte for all-solid-state sodium batteries with superior rate performance and cycle life显示文摘Seeking for composite electrolytes reinforced all-solid-state sodium ion batteries with superior long lifespan and rate performance remains a great challenge.Here,a unique strategy to tailor the architecture of composite electrolyte via inserting polymer chains into a small quantity of sulfate sodium grafted C_(48)0H_(28)O_(32)Zr_(6)(UIOSNa)is proposed.The intimate contact between polymer segments and UIOSNa with limited pore size facilitates the anion immobilization of sodium salts and reduction of polymer crystallinity,thereby providing rapid ion conduction and reducing the adverse effect caused by the immigration of anions.The tNa+grafting of-SO_(3)Na groups on fillers allows the free movement of more sodium ions to further improve and ionic conductivity.Consequently,even with the low content of UIOSNa fillers,a high ionic conductivity of 6.62×10^(-4) S·cm^(-1) at 60℃ and a transference number of 0.67 for the special designed composite electrolyte are achieved.The assembled all-solid-state sodium cell exhibits a remarkable rate performance for 500 cycles with 95.96%capacity retention at a high current rate of 4 C.The corresponding pouch cell can stably work for 1000 cycles with 97.03%capacity retention at 1 C,which is superior to most of the reported composite electrolytes in the literature.Xiang Guan Zhenhua Jian Xingan Liao Wenchao Liao Yanfei Huang Dazhu Chen Robert K.Y.Li Chen Liu 2024Nano Research2024,17,5:0
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