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A tool for deciphering the redox potential ranking of organic compounds: a case study of biomass-extracted quinones for sustainable energy

机译:用于解密有机化合物的氧化还原电位排名的工具:对可持续能源的生物质提取Quinone的案例研究

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摘要

Carbonyl compounds have emerged as promising organic electrodes for sustainable energy storage. Accelerating the process of performant materials discovery relies on the possibility of developing methodologies to enable scanning of various sets of candidates. The genesis of this educated guess strategy must be privileged to reduce the search space of experiments, accelerate this research area and contribute to sustainable effort. To address this challenge, we built a quantitative structure-activity relationship to unveil the origin of the redox potential magnitude as a function of both structural features and complexation effects. The potential of this prediction model was demonstrated on various ortho-quinones directly derived from naturally occurring catechols. In addition to the modulation provided by substituent changes, the possibility of applying various types of alkaline(-earth)-ion electrochemistry was examined thoroughly. The power of partitioning the total molecular energy into additive atomic group contributions is highlighted, and the construction of this robust strategy provides guidance towards rational selection of the most suitable compound/metal-ion couples. An upshift/downshift of the redox potential by switching from Li to Mg/Na is revealed, while the identification of the relative role played by the various components of the systems as well as electrostatic interactions is clearly identified. These results, particularly the evidence of the different substituent effects on the single/double reduction potentials and as a function of the type of electrochemistry (Li/Na/Mg), have important implications for designing new electroactive compounds with tailored redox properties.
机译:羰基化合物作为可持续能量储存的有希望的有机电极出现。加速性能材料发现的过程依赖于开发方法以实现各种候选人扫描的方法。这种受过良好教育的猜测战略的成因必须有特权,以减少实验的搜索空间,加速这一研究领域并有助于可持续的努力。为了解决这一挑战,我们建立了定量的结构 - 活动关系,以作为结构特征和梳理效果的函数推出氧化还原电位幅度的来源。在从天然存在的儿茶酚中直接衍生的各种邻醌上证明了该预测模型的潜力。除了通过取代基改变提供的调节,彻底检查施加各种碱性(4)颗粒电化学的可能性。突出了将总分子能量分配到添加剂原子群贡献的力量,并且这种稳健策略的构建为理性选择最合适的化合物/金属离子耦合提供了指导。通过从L1切换到Mg / Na的越次氧化还原电位的升降机/下频,而明确识别了由系统的各种部件以及静电相互作用发挥的相对作用的识别。这些结果,特别是对单/双降低电位的不同取代基的证据以及作为电化学类型的功能(Li / Na / Mg),对设计具有定制氧化还原性能的新的电活性化合物具有重要意义。

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    Univ Picardie Jules Verne Hub Energie UMR CNRS 7314 Lab Reactivite &

    Chim Solides LRCS 15 Rue Baudelocque F-80000 Amiens France;

    Inst Sci Mol UMR CNRS 5255 351 Cours Liberat F-33405 Talence France;

    CNR CNR SCITEC Ist Sci &

    Tecnol Chim Giulio Natta Sede Via C Golgi 19 I-20133 Milan Italy;

    Univ Picardie Jules Verne Hub Energie UMR CNRS 7314 Lab Reactivite &

    Chim Solides LRCS 15 Rue Baudelocque F-80000 Amiens France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 物理学;化学;
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