[1] |
Xuan WANG, Qiang YE.
The aggravation of side reactions caused by insufficient localized liquid supply in an all-vanadium redox flow battery stack
[J]. Energy Storage Science and Technology, 2022, 11(5): 1455-1467.
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[2] |
Lina ZHENG, Wenzhong WANG, Kaijie JIA, Shaofeng QIU, Haoyuan ZHU, Fangyong YU, Xiuxia MENG, Jinjin ZHANG, Naitao YANG.
Three-dimensional printing technologies in the field of solid oxide fuel cells
[J]. Energy Storage Science and Technology, 2021, 10(6): 1952-1962.
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[3] |
Zhihong ZHANG, Junyan MOU, Yufa MENG.
Thermal runaway propagation characteristics of an air-cooled cylindrical lithium-ion battery system
[J]. Energy Storage Science and Technology, 2021, 10(2): 658-663.
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[4] |
Jian SHEN, Bixiong HUANG, Zhaokang XIE, Jiayin LI, Ningning LIU, Zhiqiang JIA.
Internal structure layout and optimization design of FSEC racing power battery box
[J]. Energy Storage Science and Technology, 2020, 9(S1): 31-38.
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[5] |
Junxiang ZHAI, Guangli HE, Zhuang XU, Congmin LIU.
Experimental study on system efficiency of air-cooled proton exchange membrane fuel cell
[J]. Energy Storage Science and Technology, 2020, 9(6): 1885-1889.
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[6] |
LIU Qinghua, ZHANG Sai, JIANG Mingzhe, WANG Qiushi, XING Xueqi, YANG Hong, HUANG Feng, LEMMON P John, MIAO Ping.
Study on the low-cost flow battery technologies for energy storage
[J]. Energy Storage Science and Technology, 2019, 8(S1): 60-64.
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[7] |
CHEN Liduo, MA Tianyi, MA Xu, JI Dengyue, SUN Zhipeng, ZHANG Dongying.
The corresponding relationship of cycle life for LIB from three-dimensional
[J]. Energy Storage Science and Technology, 2019, 8(5): 843-849.
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[8] |
CHI Xiaoni, ZHU Mingang, WU Qiuxuan.
Research on optimal operation control based on the equivalent model of VRFB system
[J]. Energy Storage Science and Technology, 2018, 7(3): 530-538.
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[9] |
SHEN Haifeng, ZHU Xinjian, CAO Hongfei, SHAO Mengchen.
Dynamic modeling of all-vanadium flow battery
[J]. Energy Storage Science and Technology, 2018, 7(1): 135-.
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[10] |
XIE Congxin1,2, ZHENG Qiong1, LI Xianfeng1,3, ZHANG Huamin1,3.
Current advances in the flow battery technology
[J]. Energy Storage Science and Technology, 2017, 6(5): 1050-1057.
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[11] |
JING Minghua, FAN Xinzhuang, LIU Jianguo, YAN Chuanwei.
Electrochemical behavior of graphene oxide modified carbon felt as the positive electrode for vanadium flow battery#br#
[J]. Energy Storage Science and Technology, 2017, 6(2): 263-269.
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[12] |
WANG Xiaoli, ZHANG Yu, LI Ying, ZHANG Huamin.
Vanadium flow battery technology and its industrial status
[J]. Energy Storage Science and Technology, 2015, 4(5): 458-466.
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[13] |
XING Feng, ZHENG Qiong, ZHANG Huamin, LI Xianfeng, MA Xiangkun.
The measurement of Kozeny-Carman constant in porous electrode of vanadium flow battery
[J]. Energy Storage Science and Technology, 2015, 4(5): 506-509.
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[14] |
XU Weiguo, LIU Jianguo, QIN Ye, YAN Chuanwei.
Development of electrolyte thermodynamic studies for vanadium flow battery
[J]. Energy Storage Science and Technology, 2014, 3(5): 513-519.
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[15] |
LI Wenyue, WEI Guanjie, LIU Jianguo, YAN Chuanwei.
Electrode materials for all vanadium flow batteries:A review
[J]. Energy Storage Science and Technology, 2013, 2(4): 342-348.
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