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Tunneling versus Hopping in Mixed-Valence Oligo-p-phenylenevinylene Polychlorinated Bis(triphenylmethyl)Radical Anions

机译:混合价低聚对苯撑亚乙烯基多氯代双(三苯基甲基)自由基阴离子的隧穿与跳跃

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摘要

Radical anions 1~-·—5~-·, showing different lengths and incorporating up to five p-phenylenevinylene (PPV) bridges between two polychlorinated triphenylmethyl units, have been prepared by chemical or electrochemical reductions from the corresponding diradicals 1—5 which were prepared using Wittig—Horner-type chemistry. Such radical anions enabled us to study, by means of UV—vis—NIR and variable-temperature electron spin resonance spectroscopies, the long-range intramolecular electron transfer (LET) phenomena in their ground states, probing the influence of increasing the lengths of the bridges without the need of using an external bias to promote IET. The temperature dependence of the IET rate constants of mixed-valence species 1~-·—5~-· revealed the presence of two different regimes at low and high temperatures in which the mechanisms of electron tunneling via superexchange and thermally activated hopping are competing. Both mechanisms occur to different extents, depending on the sizes of the radical anions, since the lengths of the oligo-PPV bridges notably influence the tunneling efficiency and the activation energy barriers of the hopping processes, die barriers diminishing when the lengths are increased. The nature of solvents also modifies the IET rates by means of the interactions between the oligo-PPV bridges and the solvents. Finally, in the shortest compounds 1~-· and 2~-·, the IET induced optically through the superexchange mechanism can also be observed by the exhibited intervalence bands, whose intensities decrease with the length of the PPV bridge.
机译:自由基阴离子1〜-.-- 5〜-·表现出不同的长度,并通过化学或电化学还原反应从相应的双自由基1-5制备了两个多氯代三苯甲基单元之间最多包含五个对苯撑乙烯撑(PPV)桥的阴离子。使用Wittig-Horner型化学物质制备。这种自由基阴离子使我们能够通过紫外可见光谱和可变温度电子自旋共振光谱研究基态下的远距离分子内电子转移(LET)现象,从而探究增加分子长度的影响。无需使用外部偏见来促进IET的桥梁。混合价种1〜---- 5〜-的IET速率常数对温度的依赖性揭示了在低温和高温下存在两种不同的状态,其中通过超交换和热活化跳跃的电子隧穿机理相互竞争。取决于自由基阴离子的大小,两种机制在不同程度上出现,因为寡聚-PPV桥的长度会显着影响隧穿效率和跳跃过程的活化能垒,当长度增加时,晶粒垒会减少。溶剂的性质还通过寡聚PPV桥与溶剂之间的相互作用来改变IET速率。最后,在最短的化合物1〜-和2〜-·中,还可以通过显示的间隔带观察到通过超交换机理光学诱导的IET,该间隔带的强度随PPV桥的长度而降低。

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  • 来源
    《Journal of the American Chemical Society》 |2011年第15期|p.5818-5833|共16页
  • 作者单位

    Institut de Ciència de Materials de Barcelona (CSIC) and Networking Research Center on Bioengineering, Biomaterials and Nanomedicine (CIBER-BBN), Campus Universitari de Bellaterra, E-08193 Cerdanyola, Spain;

    Institut de Ciència de Materials de Barcelona (CSIC) and Networking Research Center on Bioengineering, Biomaterials and Nanomedicine (CIBER-BBN), Campus Universitari de Bellaterra, E-08193 Cerdanyola, Spain;

    Laboratoire de Chimie des Matériaux Moléculaires, Ecole Européenne de Chimie, Polymères et Matériaux, Université de Strasbourg et CNRS (UMR 7509), 25 rue Becquerel, 67087 Strasbourg, Cedex 2, France;

    Laboratoire de Chimie des Matériaux Moléculaires, Ecole Européenne de Chimie, Polymères et Matériaux, Université de Strasbourg et CNRS (UMR 7509), 25 rue Becquerel, 67087 Strasbourg, Cedex 2, France;

    Departament de Química Física, Facultat de Quimica, Universitat de Barcelona, Av. Diagonal 47, 08208 Barcelona, Spain;

    Departament de Química Física, Facultat de Quimica, Universitat de Barcelona, Av. Diagonal 47, 08208 Barcelona, Spain;

    Institut de Ciència de Materials de Barcelona (CSIC) and Networking Research Center on Bioengineering, Biomaterials and Nanomedicine (CIBER-BBN), Campus Universitari de Bellaterra, E-08193 Cerdanyola, Spain;

    Institut de Ciència de Materials de Barcelona (CSIC) and Networking Research Center on Bioengineering, Biomaterials and Nanomedicine (CIBER-BBN), Campus Universitari de Bellaterra, E-08193 Cerdanyola, Spain;

    Institut de Ciència de Materials de Barcelona (CSIC) and Networking Research Center on Bioengineering, Biomaterials and Nanomedicine (CIBER-BBN), Campus Universitari de Bellaterra, E-08193 Cerdanyola, Spain;

  • 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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  • 入库时间 2022-08-18 03:14:13

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