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Exploring the Photocyclization Pathways of Styrylthiophenes in the Synthesis of Thiahelicenes: When the Theory and Experiment Meet

机译:探索噻何洛尼硒合成中的styrylthiophenes的光循环途径:理论与实验相遇

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The introduction of thiophene rings to the helical structure of carbohelicenes has electronic effects that may be used advantageously in organic electronics. The performance of these devices is highly dependent on the sulfur atom topology, so a precise knowledge of the synthetic routes that may afford isomeric structures is necessary. We have studied the photocyclization pathway of both 2- and 3-styrylthiophenes on their way to thiahelicenes by experiment and theory. To begin with, the synthesis of stereochemically well-defined 2- and 3-styrylthiophenes allowed us to register first, and simulate later, the UV-vis electronic spectra of these precursors. This information gave us access through time-dependent density functional theory calculations to the very nature of the excited states involved in the photocyclization step and from there to the regio- and stereochemical outcome of the reaction. For the widely known case of a 2-styrylthiophene derivative, the expected naphtho[2,1-b]thiophene type of ring fusion was predicted and experimentally observed by synthesis. On the contrary, 3-styrylthiophene derivatives have been seldom used in synthetic photocyclizations. Among the two possible structural outcomes, only the naphtho[1,2-b]thiophene type of ring fusion was found to be mechanistically sound, and this was actually the only compound observed by synthesis.
机译:在碳螺旋烯的螺旋结构中引入噻吩环具有电子效应,可有利地用于有机电子学。这些装置的性能高度依赖于硫原子的拓扑结构,因此有必要精确了解可能提供异构体结构的合成路线。我们从实验和理论上研究了2-和3-苯乙烯基噻吩的光环化途径。首先,立体化学定义明确的2-和3-苯乙烯基噻吩的合成使我们能够首先记录并随后模拟这些前体的紫外-可见电子光谱。通过对光环化反应的计算,我们得到了与时间有关的信息。对于广为人知的2-苯乙烯基噻吩衍生物,预测并通过合成实验观察了预期的萘[2,1-b]噻吩型环聚变。相反,3-苯乙烯基噻吩衍生物很少用于合成光环化反应。在两种可能的结构结果中,只有萘[1,2-b]噻吩型环聚变在力学上是合理的,这实际上是合成过程中观察到的唯一化合物。

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