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Electron Storage System Based on a Two-Way Inversion of Redox Potentials

机译:基于双向氧化还原电位的电子存储系统

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摘要

Molecular-level multielectron handling toward electrical storage is a worthwhile approach to solar energy harvesting. Here, a strategy which uses chemical bonds as electron reservoirs is introduced to demonstrate the new concept of "structronics" (a neologism derived from "structure" and "electronics"). Through this concept, we establish, synthesize, and thoroughly study two multicomponent "super-electrophores": 1,8-dipyridyliumnaphtha-lene, 2, and its N,N-bridged cyclophane-like analogue, 3. Within both of them, a covalent bond can be formed and subsequently broken electrochemically. These superelectrophores are based on two electrophone (pyridinium) units that are, on purpose, spatially arranged by a naphthalene scaffold. A key characteristic of 2 and 3 is that they possess a LUMO that develops through space as the result of the interaction between the closely positioned electrophone units. In the context of electron storage, this "super-LUMO" serves as an empty reservoir, which can be filled by a two-electron reduction, giving rise to an elongated C—C bond or "super-HOMO". Because of its weakened nature, this bond can undergo an electrochemically driven cleavage at a significantly more anodic—yet accessible—potential, thereby restoring the availability of the electron pair (reservoir emptying). In the representative case study of 2, an inversion of potential in both of the two-electron processes of bond formation and bond-cleavage is demonstrated. Overall, the structronic function is characterized by an electrochemical hysteresis and a chemical reversibility. This structronic superelectrophore can be viewed as the three-dimensional counterpart of benchmark methyl viologen (MV).
机译:分子级多电子处理蓄电是太阳能收集的一种有价值的方法。在这里,介绍了一种使用化学键作为电子库的策略,以证明“结构论”(源自“结构”和“电子学”的新词)的新概念。通过这个概念,我们建立,合成并深入研究了两个多组分“超级电泳”:1,8-dipyridyliumnaphtha-lene,2和其N,N桥联的环烷类类似物3。可以形成共价键并随后电化学断裂。这些超级电泳是基于两个电话(py)单元而设计的,它们是由萘支架在空间上布置的。 2和3的主要特征是它们具有LUMO,它是由于紧密放置的电话单元之间相互作用而在空间中形成的。在电子存储的背景下,此“ super-LUMO”用作空的储液槽,可以通过两电子还原来填充,从而产生伸长的CC键或“ super-HOMO”。由于其弱化的性质,该键可以在明显更高的阳极电势下(但仍可访问)经历电化学驱动的裂解,从而恢复了电子对的可用性(储库排空)。在2的代表性案例研究中,证明了键形成和键断裂的两个电子过程中的电势反转。总的来说,结构性功能的特征在于电化学滞后和化学可逆性。可以将这种强电​​子超级电泳视为基准甲基紫精(MV)的三维对应物。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2020年第11期|5162-5176|共15页
  • 作者单位

    Universit'e de Paris ITODYS CNRS UMR 7086 F-7S013 Paris France;

    Chimie ParisTech PSL University CNRS Institute of Chemistry for Life and Health Sciences Theoretical Chemistry and Modelling 75005 Paris France;

    J. Heyrovsk'y Institute of Physical Chemistry of the Czech Academy of Sciences Dolefskova 3 182 23 Prague Czech Republic;

    Universit'e de Paris ITODYS CNRS UMR 7086 F-7S013 Paris France;

    Laboratoire de Cristallographie et Modelisation MoXeculaire du Solide Sanofi LGCR 34184 Montpellier Cedex 04 France;

    J. Heyrovsk'y Institute of Physical Chemistry of the Czech Academy of Sciences Dolefskova 3 182 23 Prague Czech Republic Institute of Organic Chemistry and Biochemistry of ASCR 166 10 Prague Czech Republic;

    Chimie ParisTech PSL University CNRS Institute of Chemistry for Life and Health Sciences Theoretical Chemistry and Modelling 75005 Paris France;

    J Heyrovsky Institute of Physical Chemistry of the Czech Academy of Sciences Dolefskova 3 182 23 Prague Czech Republic;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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