首页> 外文期刊>Journal of the American Chemical Society >Electrochemistry and Electrogenerated Chemiluminescence of Dithienylbenzothiadiazole Derivative. Differential Reactivity of Donor and Acceptor Groups and Simulations of Radical Cation−Anion and Dication−Radical Anion Annihilations
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Electrochemistry and Electrogenerated Chemiluminescence of Dithienylbenzothiadiazole Derivative. Differential Reactivity of Donor and Acceptor Groups and Simulations of Radical Cation−Anion and Dication−Radical Anion Annihilations

机译:二噻吩基苯并噻二唑衍生物的电化学和化学发光。供体和受体基团的微分反应性和自由基阳离子-阴离子和阳离子-自由基阴离子An灭的模拟

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摘要

We report here the electrochemistry and electrogenerated chemiluminescence (ECL) of a red-emitting dithienylbenzothiadiazole-based molecular fluorophore (4,7-bis(4-(4-sec-butoxyphenyl)-5-(3,5-di(1-naphthyl)phenyl)thiophen-2-yl)-2,1,3-benzothiadiazole, 1b). 1b contains two substituted thiophene groups as strong electron donors at the ends connected directly to a strong electron acceptor, 2,1,3-benzothiadiazole, in the center. Each thiophene moiety is substituted in position 2 by 3,5-di(1-naphthyl)phenyl and in position 3 by 4-sec-butoxyphenyl. Cyclic voltammetry of 1b, with scan rate ranging from 0.05 to 0.75 V/s, shows a single one-electron reduction wave (E°red = −1.18 V vs SCE) and two nernstian one-electron oxidation waves (E°1,ox = 1.01 V, E°2,ox = 1.24 V vs SCE). Reduction of the unsubstituted 2,1,3-benzothiadiazole center shows nernstian behavior with E°red = −1.56 V vs SCE. By comparison to a digital simulation, the heterogeneous electron-transfer rate constant for reduction, kr° = 1.5 × 10−3 cm/s, is significantly smaller than those for the oxidations, ko° > 0.1 cm/s, possibly indicating that the two substituted end groups have a blocking effect on the reduction of the benzothiadiazole center. The ECL spectrum, produced by electron-transfer annihilation of the reduced and oxidized forms, consists of a single peak with maximum emission at about 635 nm, consistent with the fluorescence of the parent molecule. Relative ECL intensities with respect to 9,10-diphenylanthracene are 330% and 470% for the radical anion−cation and radical anion−dication annihilation, respectively. Radical anion (A−•)−cation (A+•) annihilation produced by potential steps shows symmetric ECL transients during anodic and cathodic pulses, while for anion (A−•)−dication (A2+•) annihilation, transient ECL shows asymmetry in which the anodic pulse is narrower than the cathodic pulse. Digital simulation of the transient ECL experiments showed that the origin of the observed asymmetry is asymmetry in the amount of generated charges rather than instability of the electrogenerated species.
机译:我们在这里报告的红色发射双噻吩并二苯并噻二唑基分子荧光团(4,7-双(4-(4-仲丁氧基苯基)-5-(3,5-二(1-萘基))的电化学和电化学发光(ECL) )苯基)噻吩-2-基)-2,1,3-苯并噻二唑,1b)。 1b在中心直接与一个强电子受体2,1,3-苯并噻二唑连接的末端包含两个取代的噻吩基团作为强电子给体。每个噻吩部分在第2位被3,5-二(1-萘基)苯基取代,在第3位被4-仲丁氧基苯基取代。 1b的循环伏安法(扫描速率范围为0.05至0.75 V / s)显示了一个单电子还原波(E° red = -1.18 V vs SCE)和两个神经元单电子氧化波形(E° 1,ox = 1.01 V,E° 2,ox = 1.24 V vs SCE)。未取代的2,1,3-苯并噻二唑中心的还原显示神经元行为,E° red = -1.56 V,相对于SCE。与数字模拟相比,用于还原的异质电子传输速率常数k r °= 1.5×10 -3 cm / s,明显小于氧化,k °> 0.1 cm / s,可能表明两个取代的端基对苯并噻二唑中心的还原具有阻断作用。通过还原和氧化形式的电子转移an灭产生的ECL光谱由一个单峰组成,该峰在约635 nm处具有最大发射,与母体分子的荧光一致。对于9,10-二苯基蒽,自由基阴离子-阳离子消灭和自由基阴离子-离子dication灭的相对ECL强度分别为330%和470%。势步产生的自由基阴离子(A -•)-阳离子(A +•)ation灭显示出在阳极和阴极脉冲期间对称的ECL瞬态,而对于阴离子(A -•)-指示(A 2 +•)ni没,瞬态ECL显示不对称性,其中阳极脉冲比阴极脉冲窄。瞬态ECL实验的数字仿真表明,观察到的不对称性的起源是所产生电荷量的不对称,而不是电产生物种的不稳定性。

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  • 来源
    《Journal of the American Chemical Society》 |2010年第38期|p.13453-13461|共9页
  • 作者

    Mei Shen;

  • 作者单位

    Center for Electrochemistry, Department of Chemistry and Biochemistry, University of Texas at Austin, 1 University Station, A5300, Austin, Texas 78712-0165, and Institute of Polymer Optoelectronic Materials and Devices, South China University of Technolog;

  • 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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