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Dive into the research topics where Linlin Wang is active.

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Featured researches published by Linlin Wang.


Nanotechnology | 2016

Flexible and free-standing ternary Cd2GeO4 nanowire/graphene oxide/CNT nanocomposite film with improved lithium-ion battery performance

Linlin Wang; Xiaozhu Zhang; Guozhen Shen; Xia Peng; Min Zhang; Jingli Xu

To realize flexible lithium-ion batteries (LIBs), the design of flexible electrode/current collector materials with high mechanical flexibility, superior conductivity and excellent electrochemical performance and electrical stability are highly desirable. In this work, we developed a new ternary Cd2GeO4 nanowire/graphene oxide/carbon nanotube nanocomposite (Cd2GeO4 NW/GO/CNT) film electrode. Benefiting from the efficient combination of GO and Cd2GeO4 NWs, our Cd2GeO4 NW/GO/CNT composite film exhibits a capacity of 784 mA h g(-1) after 30 cycles at 200 mA g(-1), which is 2.7 times higher than that of Cd2GeO4 NW/CNT film (290 mA h g(-1)). At a higher rate of 400 mA g(-1) and 1 A g(-1), the Cd2GeO4 NW/GO/CNT film delivers a stable capacity of 617 and 397 mA h g(-1), respectively. Even at 2.5 A g(-1), it still exhibits a high rate capacity of 180 mA h g(-1). The flexible Cd2GeO4 NW/GO/CNT film clearly demonstrates good cycling stability and rate performance for anode materials in LIBs. This route may be extended to design other flexible free-standing metal germanate nanocomposite anode materials.


Russian Journal of Electrochemistry | 2018

A Novel V 2 AlC Electrode Material for Supercapacitors

N. Xia; Jiachang Zhao; J. Sun; C. Y. Lai; Zhendong Zhang; Yuandong Wu; Linlin Wang; Yichuan Rui; Jingli Xu

A novel V2AlC electrode material for supercapacitors was investigated in this study. The structure and surface morphology were examined using X-ray diffraction (XRD) and field emission scanning electron microscopy (FESEM). The formation of irregularly shaped V2AlC with different particle size distribution was confirmed by XRD and FESEM. The electrochemical measurements were performed by cyclic voltammetry (CV), galvanostatic charge discharge and electrochemical impedance spectroscopy (EIS). V2AlC electrode exhibited 27.6 F g–1 of specific capacitance at the current density of 0.5 A g–1. The specific capacitance of V2AlC electrode remained 93.8% of the first cycle after 2000 cycles. V2AlC has great potential for application in supercapacitors.


Applied Surface Science | 2016

Template-free synthesis of hierarchical TiO2 hollow microspheres as scattering layer for dye-sensitized solar cells

Yichuan Rui; Linlin Wang; Jiachang Zhao; Hongzhi Wang; Yaogang Li; Qinghong Zhang; Jingli Xu


Materials Letters | 2015

Na2CoSiO4 as a novel positive electrode material for sodium-ion capacitors

Shuai Gao; Jiachang Zhao; Yu Zhao; Yuandong Wu; Xiaozhu Zhang; Linlin Wang; Xijian Liu; Yichuan Rui; Jingli Xu


Ionics | 2015

High performance Na3V2 (PO4)3/C composite electrode for sodium-ion capacitors

Shuyun Wang; Jiachang Zhao; Linlin Wang; Xijian Liu; Yuandong Wu; Jingli Xu


Applied Surface Science | 2016

Effect of morphology and defect density on electron transfer of electrochemically reduced graphene oxide

Yan Zhang; Huilian Hao; Linlin Wang


Dyes and Pigments | 2018

4-Phenyl-1,8-naphthalimides: Brightness and tuning emission over widely visible gamut in different aggregated states

Yi Qu; Linlin Wang; Jianwei Wu; Yichuan Rui; Jian Cao; Jingli Xu


Dyes and Pigments | 2017

Dipyridylphenylamine-based chemodosimeter for sulfite with optimizing ratiometric signals via synchronous fluorescence spectroscopy

Jianwei Wu; Yi Qu; Linlin Wang; Liliang Huang; Yichuan Rui; Jian Cao; Jingli Xu


Applied Surface Science | 2019

Monodispersed SnO2 microspheres aggregated by tunable building units as effective photoelectrodes in solar cells

Xiaokun Zhang; Yichuan Rui; Jingxia Yang; Linlin Wang; Yuanqiang Wang; Jingli Xu


Russian Journal of Electrochemistry | 2018

A Novel V2AlC Electrode Material for Supercapacitors

N. Xia; Jiachang Zhao; J. Sun; C. Y. Lai; Zhendong Zhang; Yuandong Wu; Linlin Wang; Yichuan Rui; Jingli Xu

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C. Y. Lai

Shanghai University of Electric Power

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Yu Zhao

City College of New York

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Guozhen Shen

Chinese Academy of Sciences

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