[1] |
Qi LIAO, Xiaolin CAO, Yibo DENG, Yaolin YANG, Ting CHEN.
Heat dissipation simulation of tram supercapacitor module
[J]. Energy Storage Science and Technology, 2024, 13(2): 702-711.
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[2] |
Xin LIU, Xiling MAO, Xinyu YAN, Junqiang WANG, Mengwei LI.
Preparation and electrochemical properties of NiMn-MOF with 3D pore network electrode materials
[J]. Energy Storage Science and Technology, 2024, 13(2): 361-369.
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[3] |
Panchun TANG, Rong YAN, Can ZHANG, Ze SUN.
Simulation of air- and liquid-cooled thermal management of stacked automotive supercapacitors
[J]. Energy Storage Science and Technology, 2024, 13(2): 483-491.
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[4] |
Yuedi WANG, Zhongzhu QIU, Miao WU, Yanyan ZHU, Meng QU.
Preparation and electrochemical properties of porous NiMoO4/NiCo2S4 composites
[J]. Energy Storage Science and Technology, 2023, 12(4): 1034-1044.
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[5] |
Ke XU, Juexi CHEN, Yao MENG, Zhiye YUAN, Xingyan WANG.
Preparation of Cu-NiCoP microspheres and their supercapacitive performance
[J]. Energy Storage Science and Technology, 2023, 12(2): 357-365.
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[6] |
Xiangjun LI, Yibiao GUAN, Juan HU, Xiaokang LAI.
Review of energy storage application in China from 2012 to 2022
[J]. Energy Storage Science and Technology, 2022, 11(9): 2702-2712.
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[7] |
Yuzuo WANG, Yinli LU, Miao DENG, Bin YANG, Xuewen YU, Ge JIN, Dianbo RUAN.
Research progress of self-discharge in supercapacitors
[J]. Energy Storage Science and Technology, 2022, 11(7): 2114-2125.
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[8] |
Nan LIN, Ulrike KREWER, Jochen ZAUSCH, Konrad STEINER, Haibo LIN, Shouhua FENG.
Development and application of multiphysics models for electrochemical energy storage and conversion systems
[J]. Energy Storage Science and Technology, 2022, 11(4): 1149-1164.
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[9] |
Tiezhu GUO, Di ZHOU, Chuanfang ZHANG.
Strategies for improving MXene colloidal stability and impact on their supercapacitor performance
[J]. Energy Storage Science and Technology, 2022, 11(4): 1165-1174.
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[10] |
Yongli TONG, Xiang WU.
Electrochemical performance of Co3O4 electrode materials derived from Co metal-organic framework
[J]. Energy Storage Science and Technology, 2022, 11(3): 1035-1043.
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[11] |
Bowen YUE, Jiahuan TONG, Yuwen LIU, Feng HUO.
Simulation calculation method and application of ionic liquid electrolyte
[J]. Energy Storage Science and Technology, 2022, 11(3): 897-911.
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[12] |
Xiubo ZHANG, Chang YU, Jinhe YU, Yingbin LIU, Yuanyang XIE, Jianjian WANG, Shuqin LAN, Jieshan QIU.
Recent progress of polymer electrolytes for supercapacitors under extreme environments
[J]. Energy Storage Science and Technology, 2022, 11(12): 3808-3818.
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[13] |
Li WEI, Xuelin HUANG, Wanting ZHANG, Xintong BAI.
A temperature monitoring method of supercapacitor module based on a small number of temperature sensors
[J]. Energy Storage Science and Technology, 2022, 11(11): 3631-3640.
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[14] |
Qiao DENG, Dongyuan QIU, Wenchao GU, Yanfeng CHEN, Bo ZHANG.
Parameter-identification method for fractional-order models of supercapacitors based on frequency-band division
[J]. Energy Storage Science and Technology, 2022, 11(10): 3371-3380.
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[15] |
Xue HAN, Wei DENG, Xufeng ZHOU, Zhaopin LIU.
Patenting activity of graphene for energy storage
[J]. Energy Storage Science and Technology, 2022, 11(1): 335-349.
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