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Wei-Dong He, Lu-Han Ye, Ke-Chun Wen, Ya-Chun Liang, Wei-Qiang Lv, Gao-Long Zhu, Kelvin H. L. Zhan. Materials Research Advances towards High-Capacity Battery/Fuel Cell Devices[J]. 电子科技大学(英文版), 2016, 14(1): 12-20. DOI: 10.11989/JEST.1674-862X.511031
引用本文: Wei-Dong He, Lu-Han Ye, Ke-Chun Wen, Ya-Chun Liang, Wei-Qiang Lv, Gao-Long Zhu, Kelvin H. L. Zhan. Materials Research Advances towards High-Capacity Battery/Fuel Cell Devices[J]. 电子科技大学(英文版), 2016, 14(1): 12-20. DOI: 10.11989/JEST.1674-862X.511031
Wei-Dong He, Lu-Han Ye, Ke-Chun Wen, Ya-Chun Liang, Wei-Qiang Lv, Gao-Long Zhu, Kelvin H. L. Zhan. Materials Research Advances towards High-Capacity Battery/Fuel Cell Devices[J]. Journal of Electronic Science and Technology, 2016, 14(1): 12-20. DOI: 10.11989/JEST.1674-862X.511031
Citation: Wei-Dong He, Lu-Han Ye, Ke-Chun Wen, Ya-Chun Liang, Wei-Qiang Lv, Gao-Long Zhu, Kelvin H. L. Zhan. Materials Research Advances towards High-Capacity Battery/Fuel Cell Devices[J]. Journal of Electronic Science and Technology, 2016, 14(1): 12-20. DOI: 10.11989/JEST.1674-862X.511031

Materials Research Advances towards High-Capacity Battery/Fuel Cell Devices

Materials Research Advances towards High-Capacity Battery/Fuel Cell Devices

  • 摘要: The world has entered an era featured with fast transportations, instant communications, and prompt technological revolutions, the further advancement of which all relies fundamentally, yet, on the development of cost-effective energy resources allowing for durable and high-rate energy supply. Current battery and fuel cell systems are challenged by a few issues characterized either by insufficient energy capacity or by operation instability and, thus, are not ideal for such highly-demanded applications as electrical vehicles and portable electronic devices. In this mini-review, we present, from materials perspectives, a few selected important breakthroughs in energy resources employed in these applications. Prospectives are then given to look towards future research activities for seeking viable materials solutions for addressing the capacity, durability, and cost shortcomings associated with current battery/fuel cell devices.

     

    Abstract: The world has entered an era featured with fast transportations, instant communications, and prompt technological revolutions, the further advancement of which all relies fundamentally, yet, on the development of cost-effective energy resources allowing for durable and high-rate energy supply. Current battery and fuel cell systems are challenged by a few issues characterized either by insufficient energy capacity or by operation instability and, thus, are not ideal for such highly-demanded applications as electrical vehicles and portable electronic devices. In this mini-review, we present, from materials perspectives, a few selected important breakthroughs in energy resources employed in these applications. Prospectives are then given to look towards future research activities for seeking viable materials solutions for addressing the capacity, durability, and cost shortcomings associated with current battery/fuel cell devices.

     

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