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首页> 外文期刊>Journal of the American Chemical Society >Electrochemistry and Electrogenerated Chemiluminescence of Three Phenanthrene Derivatives, Enhancement of Radical Stability, and Electrogenerated Chemiluminescence Efficiency by Substituent Groups
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Electrochemistry and Electrogenerated Chemiluminescence of Three Phenanthrene Derivatives, Enhancement of Radical Stability, and Electrogenerated Chemiluminescence Efficiency by Substituent Groups

机译:三种取代基衍生物的电化学和电化学发光,自由基稳定性的增强和电化学发光效率的取代基

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摘要

The electrochemistry and electrogenerated chemiluminescence (ECL) of three phenanthrene derivatives, 3,6-diphenyl-9,10-bis-(4-tert-butyl- phenyl)phenanthrene (TphP, T1), 3,6-di(naphthalen-2-yl)-9,10-bis(4-tert- butylphenyl)phenanthrene (TnaP, T2), and 3,6-di(pyrene-l-yl)-9,10-bis(4- fert-butylphenyl)phenanthrene (TpyP, T3), are investigated in an acetoni- trile:benzene (v:v = 1:1) solvent. Cyclic voltammetry (CV) of the three derivatives shows reversible reduction waves and less chemically reversible oxidation waves at low scan rates. The CV character becomes more reversible, and the stability of the radical cations increases as the conjugation of the substituent groups appended to the phenanthrene increases. This finding indicates that the radical ion stabilities in phenanthrene derivatives are drastically improved by increasing the conjugation of the substituent groups; thus, electrochemically stable radical ions can be obtained by introducing more conjugated groups to the phenanthrene center. Additionally, ECL is generated for all compounds by radical ion annihilation, and the ECL spectrum shows good agreement with the fluorescence emission, assigned as emission by the S-route. ECL efficiencies for radical ion annihilation are 0.004 for TphP, 0.16 for TnaP, and 0.25 for TpyP, respectively, and the ECL efficiency increases with the conjugation of the substituent groups appended to the phenanthrene increases. Radical ion annihilation produced by potential steps exhibits asymmetric ECL transients in which the cathodic ECL pulse is smaller than the anodic pulse due to the instability of the radical cation. These molecules can produce a stronger ECL, which can be observed by the naked eye in a lighted room, on reduction in the presence of a coreactant (benzoyl peroxide).
机译:三种菲衍生物3,6-二苯基-9,10-双-(4-叔丁基-苯基)菲(TphP,T1),3,6-二萘(-2)的电化学和电化学发光(ECL) -yl)-9,10-双(4-叔丁基苯基)菲(TnaP,T2)和3,6-二(py-1-基)-9,10-双(4-叔丁基苯基)菲(TpyP,T3)在乙腈:苯(v:v = 1:1)溶剂中研究。三种衍生物的循环伏安法(CV)在低扫描速率下显示出可逆的还原波和较少的化学可逆的氧化波。 CV特性变得更可逆,并且随着附加到菲上的取代基基团的共轭增加,自由基阳离子的稳定性也增加。这一发现表明,通过增加取代基的共轭作用,菲衍生物中的自由基离子稳定性得到了极大的改善。因此,通过将更多的共轭基团引入菲中心可以获得电化学稳定的自由基离子。此外,所有化合物均通过自由基离子for灭产生ECL,并且ECL光谱与荧光发射显示出良好的一致性,荧光发射被S路径指定为发射。自由基离子an灭的ECL效率对于TphP为0.004,对于TnaP为0.16,对于TpyP为0.25,并且随着附加到菲上的取代基团的缀合,ECL效率增加。由潜在步骤产生的自由基离子ni灭表现出不对称的ECL瞬变,其中由于自由基阳离子的不稳定性,阴极ECL脉冲小于阳极脉冲。这些分子可以产生更强的ECL,在存在共反应剂(过氧化苯甲酰)的情况下还原时,可以通过肉眼在明亮的房间中观察到该ECL。

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  • 来源
    《Journal of the American Chemical Society》 |2013年第24期|9041-9049|共9页
  • 作者单位

    Center for Electrochemistry, Department of Chemistry and Biochemistry, The University of Texas, Austin, Texas 78712, United States;

    Department of Chemistry, National Tsing-Hua University, Hsinchu 30013, Taiwan;

    Department of Chemistry, National Tsing-Hua University, Hsinchu 30013, Taiwan;

    Center for Electrochemistry, Department of Chemistry and Biochemistry, The University of Texas, Austin, Texas 78712, United States;

  • 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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