Holey three-dimensional wood-based electrode for vanadium flow batteries

被引:63
作者
Jiao, Miaolun [1 ]
Liu, Tao [2 ]
Chen, Chaoji [1 ]
Yue, Meng [2 ]
Pastel, Glenn [1 ]
Yao, Yonggang [1 ]
Xie, Hua [1 ]
Gan, Wentao [1 ]
Gong, Amy [1 ]
Li, Xianfeng [2 ]
Hu, Liangbing [1 ]
机构
[1] Univ Maryland, Dept Mat Sci & Engn, College Pk, MD 20742 USA
[2] Chinese Acad Sci, Dalian Inst Chem Phys, Div Energy Storage, Dalian 116023, Peoples R China
关键词
Flow battery; Carbonized wood; Low-tortuosity; Perforation; Sustainability; LOW-TORTUOSITY; GRAPHITE FELT; CARBON FELT; PERFORMANCE; CAPACITY; CATALYST; PAPER;
D O I
10.1016/j.ensm.2020.02.008
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The vanadium flow battery (VFB) is widely regarded as one of the most reliable large-scale energy storage technologies due to its flexible design, long cycle life, and high safety. However, novel electrodes for VFBs with a well-suited structure by cost-effective manufacturing processes are still highly sought after to penetrate the growing energy storage market. Here, we demonstrate a holey three-dimensional (3D) wood-based electrode for VFBs, which was engineered by the facile perforation and carbonization of earth-abundant, low-cost, and sustainable wood. The 3D-wood electrode inherits the intrinsic, vertically-aligned channels (i.e. low tortuosity structure) of the original crude wood material, which provides fluent electrolyte transport paths in the flow battery system. Furthermore, small holes (approximately 1.3 mm) are drilled across the 3D-wood electrode in the perpendicular direction to connect the parallel channels, thereby enabling ion exchange and reducing flow resistance. The concentration polarization is significantly reduced during the charge and discharge process in VFB, due to these electrode modifications. The porous structure of the 3D-wood electrode, with a high specific surface area of 216.77 m(2) g(-1) and oxygen functional groups, provides sufficient reaction sites for vanadium cations to enhance the electrochemical reactivity of VFBs. The superior structure of the 3D-wood electrode ensures the feasibility in VFBs and offers a promising direction for developing flow battery electrodes through pore engineering of earth-abundant biomaterials.
引用
收藏
页码:327 / 332
页数:6
相关论文
共 30 条
[1]  
Chen CJ, 2017, ENERG ENVIRON SCI, V10, P538, DOI [10.1039/C6EE03716J, 10.1039/c6ee03716j]
[2]   Mesoporous, Three-Dimensional Wood Membrane Decorated with Nanoparticles for Highly Efficient Water Treatment [J].
Chen, Fengjuan ;
Gong, Amy S. ;
Zhu, Mingwei ;
Chen, Guang ;
Lacey, Steven D. ;
Jiang, Feng ;
Li, Yongfeng ;
Wang, Yanbin ;
Dai, Jiaqi ;
Yao, Yonggang ;
Song, Jianwei ;
Liu, Boyang ;
Fu, Kun ;
Das, Siddhartha ;
Hu, Liangbing .
ACS NANO, 2017, 11 (04) :4275-4282
[3]   Recent progress in organic redox flow batteries: Active materials, electrolytes and membranes [J].
Chen, Hongning ;
Cong, Guangtao ;
Lu, Yi-Chun .
JOURNAL OF ENERGY CHEMISTRY, 2018, 27 (05) :1304-1325
[4]   Organic Eutectic Electrolytes for Future Flow Batteries [J].
Cong, Guangtao ;
Lu, Yi-Chun .
CHEM, 2018, 4 (12) :2732-2734
[5]   Combined economic and technological evaluation of battery energy storage for grid applications [J].
Davies, D. M. ;
Verde, M. G. ;
Mnyshenko, O. ;
Chen, Y. R. ;
Rajeev, R. ;
Meng, Y. S. ;
Elliott, G. .
NATURE ENERGY, 2019, 4 (01) :42-50
[6]   A High-Performance Composite Electrode for Vanadium Redox Flow Batteries [J].
Deng, Qi ;
Huang, Peng ;
Zhou, Wen-Xin ;
Ma, Qiang ;
Zhou, Nan ;
Xie, Hao ;
Ling, Wei ;
Zhou, Chun-Jiao ;
Yin, Ya-Xia ;
Wu, Xiong-Wei ;
Lu, Xiang-Yang ;
Guo, Yu-Guo .
ADVANCED ENERGY MATERIALS, 2017, 7 (18)
[7]   Electrospun Carbon Nanofibers as Alternative Electrode Materials for Vanadium Redox Flow Batteries [J].
Fetyan, Abdulmonem ;
Derr, Igor ;
Kayarkatte, Manoj Krishna ;
Langner, Joachim ;
Bernsmeier, Denis ;
Kraehnert, Ralph ;
Roth, Christina .
CHEMELECTROCHEM, 2015, 2 (12) :2055-2060
[8]   Carbon layer-exfoliated, wettability-enhanced, SO3H-functionalized carbon paper: A superior positive electrode for vanadium redox flow battery [J].
He, Zhangxing ;
Jiang, Yingqiao ;
Li, Yuehua ;
Zhu, Jing ;
Zhou, Huizhu ;
Meng, Wei ;
Wang, Ling ;
Dai, Lei .
CARBON, 2018, 127 :297-304
[9]   Three-dimensional Si/hard-carbon/graphene network as high-performance anode material for lithium ion batteries [J].
Jiao, Miao-lun ;
Qi, Jie ;
Shi, Zhi-qiang ;
Wang, Cheng-yang .
JOURNAL OF MATERIALS SCIENCE, 2018, 53 (03) :2149-2160
[10]   SiO2/Carbon Composite Microspheres with Hollow Core-Shell Structure as a High-Stability Electrode for Lithium-Ion Batteries [J].
Jiao, Miaolun ;
Liu, Kunlin ;
Shi, Zhiqiang ;
Wang, Chengyang .
CHEMELECTROCHEM, 2017, 4 (03) :542-549