首页> 中文期刊>安徽地质 >Theoretical and Experimental Sets of Choice Anode/ Cathode Architectonics for High-Performance Full-Scale LIB Built-up Models

Theoretical and Experimental Sets of Choice Anode/ Cathode Architectonics for High-Performance Full-Scale LIB Built-up Models

     

摘要

To control the power hierarchy design of lithium-ion battery(LIB)builtup sets for electric vehicles(EVs),we offer intensive theoretical and experimental sets of choice anode/cathode architectonics that can be modulated in full-scale LIB built-up models.As primary structural tectonics,heterogeneous composite superstructures of full-cell-LIB(anode//cathode)electrodes were designed in closely packed flower agave rosettes TiO2@C(FRTO@C anode)and vertical-star-tower LiFePO4@C(VST@C cathode)building blocks to regulate the electron/ion movement in the three-dimensional axes and orientation pathways.The superpower hierarchy surfaces and multi-directional orientation components may create isosurface potential electrodes with mobile electron movements,in-to-out interplay electron dominances,and electron/charge cloud distributions.This study is the first to evaluate the hotkeys of choice anode/cathode architectonics to assemble different LIB-electrode platforms with high-mobility electron/ion flows and high-performance capacity functionalities.Density functional theory calculation revealed that the FRTO@C anode and VST-(i)@C cathode architectonics are a superior choice for the configuration of full-scale LIB built-up models.The integrated FRTO@C//VST-(i)@C full-scale LIB retains a huge discharge capacity(~94.2%),an average Coulombic efficiency of 99.85%after 2000 cycles at 1 C,and a high energy density of 127 Wh kg?1,thereby satisfying scale-up commercial EV requirements.

著录项

  • 来源
    《安徽地质》|2019年第4期|479-501|共23页
  • 作者单位

    National Institute for Materials Science(NIMS) Sengen 1-2-1 Tsukuba Ibaraki 305-0047 Japan;

    Department of Physics Faculty of Science Damanhur University Damanhur Egypt;

    Department of Mathematics Al-Aflaj College of Science and Human Studies Prince Sattam Bin Abdulaziz University Al-Aflaj 710-11912 Saudi Arabia;

    Department of Mechanical and Construction Engineering Faculty of Engineering and Environment Northumbria University Newcastle upon Tyne NE1 8ST UK;

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  • 入库时间 2023-07-25 23:48:06

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