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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Using core-shell interlinked polymer@C-iodine hollow spheres to synergistically depress polyiodide shuttle and boost kinetics for iodine-based batteries
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Using core-shell interlinked polymer@C-iodine hollow spheres to synergistically depress polyiodide shuttle and boost kinetics for iodine-based batteries

机译:使用核心壳互连聚合物@ C-碘空心球体以协同抑制基于碘电池的聚碘碘梭和促进动力学

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摘要

Rechargeable iodine-based batteries have attracted much attention owing to their high energy density and low cost, but the inferior kinetics and high iodine solubility severely restrict their practical applications. In the present study, hollow core-shell interlinked polymer@C-iodine spheres were developed to promote the comprehensive characteristics of the iodine electrode. A facile "top-down" synthesis process is used in the present study. The "top" precursor was prepared based on an n-doped hollow carbon sphere (NHCS)-iodine substrate, which was connected and filled with polyvinylpyrrolidone (PVP)-iodine polymer solution. After the solvent was evaporated, the polymer contracted and the shell-core interlinked units were fabricated, resulting in the "down" product, i.e. Polymer@C-iodine spheres. It not only has a highly conductive and porous substrate to accelerate electrochemical kinetics, but also possesses strong chemical interactions between PVP and iodine to restrict the polyiodide shuttle. Herein, for the first time, the redox mechanism of the polymer@C-iodine spheres is explained, and moreover, their synergistic effects on accelerating electrochemical kinetics and promoting thermal stability are demonstrated. The improved kinetic and thermal characteristics are favorable to their superior rate capability, long-term cycling stability and low polyiodide shuttle, which make them a good cathode candidate for iodine-based batteries. Moreover, the superior high-rate long-term cycling properties of four kinds of iodine-based batteries, namely lithium-iodine systems, sodium-iodine systems and iodine-carbon (lithium-ion and sodium-ion) full batteries, which are based on the polymer@C-iodine spheres further demonstrate their wide applicability and high efficiency. This work not only provides a new strategy to fabricate high-performance electrodes, but also provides some new insights into developing iodine-based electrochemical systems with low cost, high safety and high performance.
机译:由于其高能量密度和低成本,可充电碘基电池引起了很多关注,而是严重的动力学和高碘溶解度严重限制了其实际应用。在本研究中,开发了中空核 - 壳相互连接的聚合物@ C-碘球,以促进碘电极的综合特性。在本研究中使用容易的“自上而下”合成过程。基于N掺杂的中空碳球(NHCs) - 碘衬底制备“顶部”前体,其连接和填充聚乙烯基吡咯烷酮(PVP) - 碘聚合物溶液。蒸发溶剂后,缩合聚合物并制备壳核相互连接的单元,导致“下”产物,即聚合物@ C-碘球。它不仅具有高导电和多孔的基材,可以加速电化学动力学,而且还具有PVP和碘之间的强化学相互作用,以限制聚碘梭梭。在此,首次说明了聚合物@ C-碘球的氧化还原机制,而且还证明了对加速电化学动力学和促进热稳定性的协同作用。改进的动力学和热特性是有利于其优异的速率能力,长期循环稳定性和低聚碘梭梭,使其成为碘基电池的良好阴极候选者。此外,四种基于碘电池的高速率长期循环性能,即锂 - 碘系统,碘 - 碘系统和碘 - 碳(锂离子和钠离子)全电池,其是基于的在聚合物中,C-碘球体进一步证明了它们广泛的适用性和高效率。这项工作不仅提供了制造高性能电极的新策略,而且还提供了一些新的洞察力,进入具有低成本,高安全性和高性能的基于碘基电化学系统。

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    Harbin Normal Univ Minist Educ Key Lab Photochem Biomat &

    Energy Storage Mat Key Lab Photon &

    Elect Bandgap Mat Harbin 150025 Heilongjiang Peoples R China;

    Harbin Engn Univ Coll Mat Sci &

    Chem Engn Minist Educ Key Lab Superlight Mat &

    Surface Technol Harbin 150001 Heilongjiang Peoples R China;

    Harbin Engn Univ Coll Mat Sci &

    Chem Engn Minist Educ Key Lab Superlight Mat &

    Surface Technol Harbin 150001 Heilongjiang Peoples R China;

    Harbin Normal Univ Minist Educ Key Lab Photochem Biomat &

    Energy Storage Mat Key Lab Photon &

    Elect Bandgap Mat Harbin 150025 Heilongjiang Peoples R China;

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  • 正文语种 eng
  • 中图分类 工程材料学;
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