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Effects of terminal substituents on electrochemical reduction of X-PhCH = NPhCH = CHPh-Y

机译:末端取代基对X-PHCH = NPHCH = CHPH-Y电化学减少的影响

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Structural influence on the electrochemical properties of X-PhCH = NPhCH = CHPh-Y type of Schiff bases with long conjugated core were studied from the viewpoint of reduction potentials (E-(red)), which was determined by cyclic voltammetry on twenty-eight compounds. The effects of X and Y as terminal groups on E-(red) were also explored by means of computational methods. The results show that electronic effects, especially resonance effects caused by ending groups X and Y play a dominant role on the E-(red) values, while Y-group contributes less significantly than X-group does. Also, with lengthening of conjugated chain, the E-(red) values are more affected by the effect of excited state. Finally, a quantitative model was developed based on the respective effects of X and Y, which was used to scale the effects of remote substituents on E-(red). The quantitative computing model was proven reliable by the leave-one-out method, supporting that the effects of Y terminals on E-(red) are strengthened with increasing degree of core conjugation. The present study provides deeper insights into the effects of ending substituents on the electrochemical reduction of Schiff bases with long conjugated core.
机译:从减少电位(E-(红色))的观点来看,研究了X-PHCH = NPHCH = NPHCH = NPHCH = NPHCH = NPHCH = NPHCH =具有长共轭芯的CHPH-Y型的CHPH-Y型。通过循环伏安法测定二十八个化合物。还通过计算方法探讨了X和Y作为E-(红色)上的终端组的影响。结果表明,电子效应,尤其是由结束组x和y引起的共振效应在e-(红色)值上发挥着主导作用,而Y组贡献比X组的显着效果较小。而且,随着共轭链的延长,E-(红色)值受激发状态的影响更大的影响。最后,基于X和Y的各自作用开发了定量模型,其用于扩展远程取代基对E-(红色)的影响。通过休假方法证明定量计算模型可靠,支持随着核心缀合程度的增加,加强了y末端在电子(红色)上的效果。本研究提供了更深入的见解,进入结束取代基对长共轭芯的席石岩碱电化学减少的影响。

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