From bibliometric analysis: 3D printing design strategies and battery applications with a focus on zinc‐ion batteries  被引量:3

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作  者:Xuan Gao Kejiang Liu Chang Su Wei Zhang Yuhang Dai Ivan P.Parkin Claire J.Carmalt Guanjie He 

机构地区:[1]Christopher Ingold Laboratory,Department of Chemistry,University College London,London,UK [2]Electrochemical Innovation Lab(EIL),Department of Chemical Engineering,University College London,London,UK [3]Department of Physics,Hong Kong Baptist University,Hong Kong,China [4]Nanyang Technopreneurship Center,Nanyang Technological University,Singapore,Singapore

出  处:《SmartMat》2024年第1期59-82,共24页智能材料(英文)

基  金:Xuan Gao thanked the funding support from China Scholarship Council/University College London for the joint PhD scholarship;The authors would like to acknowledge the Engineering and Physical Sciences Research Council,United Kingdom(EPSRC,Nos.EP/L015862/1,EP/V027433/1,and EP/V027433/2).

摘  要:Three‐dimensional(3D)printing has the potential to revolutionize the way energy storage devices are designed and manufactured.In this paper,we explore the use of 3D printing in the design and production of energy storage devices,especially zinc‐ion batteries(ZIBs)and examine its potential advantages over traditional manufacturing methods.3D printing could significantly improve the customization of ZIBs,making it a promising strategy for the future of energy storage.In particular,3D printing allows for the creation of complex,customized geometries,and designs that can optimize the energy density,power density,and overall performance of batteries.Simultaneously,we discuss and compare the impact of 3D printing design strategies based on different configurations of film,interdigitation,and framework on energy storage devices with a focus on ZIBs.Additionally,3D printing enables the rapid prototyping and production of batteries,reducing leading times and costs compared with traditional manufacturing methods.However,there are also challenges and limitations to consider,such as the need for further development of suitable 3D printing materials and processes for energy storage applications.

关 键 词:3D printing battery commercialization bibliometric analysis electrode configurations zinc‐ion battery 

分 类 号:TM912[电气工程—电力电子与电力传动]

 

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