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Journal of Transportation Systems Engineering and Information Technology Subject Index 被引量:3
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《交通运输系统工程与信息》 EI CSCD 2007年第6期129-135,共7页
关键词 Journal of transportation Systems engineering and Information Technology Subject Index MODE
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Journal of Transportation Systems Engineering and Information Technology Author Index Page number refers tothe first page of paper
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《交通运输系统工程与信息》 EI CSCD 2006年第6期182-186,共5页
关键词 PING PAGE Journal of transportation Systems engineering and Information Technology Author Index Page number refers tothe first page of paper
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Journal of Transportation Systems Engineering and Information Technology Subject Index Page number refers tothe first page of paper
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《交通运输系统工程与信息》 EI CSCD 2006年第6期174-181,共8页
关键词 PAGE Journal of transportation Systems engineering and Information Technology Subject Index Page number refers tothe first page of paper MODE
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Journal of Transportation Systems Engineering and Information Technology Author Index
4
《交通运输系统工程与信息》 EI CSCD 2007年第6期136-139,共4页
关键词 PING Journal of transportation Systems engineering and Information Technology Author Index
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Engineering two-dimensional pores in freestanding TiO_2/graphene gel film for high performance lithium ion battery
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作者 Xiaojun Yan Yuanyuan Wang +6 位作者 Congcong Liu Min Guo Jingying Tao Jing Cao Dongju Fu Liyi Dai Xiaowei Yang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2018年第1期176-182,共7页
As the key component of electrochemical energy storage devices, an electrode with superior ions transport pores is the important premise for high electrochemical performance. In this paper, we developed a unique solut... As the key component of electrochemical energy storage devices, an electrode with superior ions transport pores is the important premise for high electrochemical performance. In this paper, we developed a unique solution process to prepare freestanding TiO_2/graphene hydrogel electrode with tunable density and porous structures. By incorporating room temperature ionic liquids(RTILs), even upon drying, the non-volatile RTILs that remained in the gel film would preserve the efficient ion transport channels and prevent the electrode from closely stacking, to develop dense yet porous structures. As a result, the dense TiO_2/graphene gel film as an electrode for lithium ion battery displayed a good gravimetric electrochemical performance and more importantly a high volumetric performance. 展开更多
关键词 TiO2/graphene gel electrode Pore engineering Ions transport channels Lithium ion battery Volumetric performance
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