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用于桥连硝氧自由基的混合苯并噻吩寡聚物。

Mixed Phenyl and Thiophene Oligomers for Bridging Nitronyl Nitroxides.

机构信息

Max Planck Institute for Polymer Research, Ackermannweg 10 , 55128 Mainz, Germany.

International Tomography Center, Siberian Branch, Russian Academy of Sciences , Institutskaya Str. 3a, 630090 Novosibirsk, Russian Federation.

出版信息

J Org Chem. 2017 Aug 4;82(15):7764-7773. doi: 10.1021/acs.joc.7b00435. Epub 2017 Jul 14.

Abstract

The synthesis of four nitronyl nitroxide (NN) biradicals is described which are conjugatively linked through p-ter-phenyl (PPP), ter-thiophene (TTT) and alternating phenylene (P) and thiophene (T) units as PTP and TPT. We first utilized Suzuki and Stille coupling reactions through protection and deprotection protocols to synthesize these (NN) biradicals. Single crystals were efficiently grown for radical precursors of 3, 5, 6, PPP-NNSi, PTP-NNSi, and final biradicals of TTT-NN, TPT-NN, and PPP-NN, whose structures and molecular packing were examined by X-ray diffraction studies. As a result, much smaller torsions between the NN and thiophene units (∼10°) in TTT-NN and TPT-NN than for NN and phenyl units (∼29°) in PPP-NN were observed due to smaller hindrance for a five vs a six membered ring. All four biradicals TTT-NN, TPT-NN, PTP-NN, and PPP-NN were investigated by EPR and optical spectroscopy combined with DFT calculations. The magnetic susceptibility was studied by SQUID measurements for TTT-NN and TPT-NN. The intramolecular exchange interactions for TPT-NN and TTT-NN were found in good agreement with the ones calculated by broken symmetry DFT calculations.

摘要

描述了通过 p-三联苯(PPP)、三噻吩(TTT)和交替的苯并噻吩(P)和噻吩(T)单元作为 PTP 和 TPT 连接的四个硝酰基氮自由基(NN)双自由基的合成。我们首先通过保护和脱保护方案利用 Suzuki 和 Stille 偶联反应合成了这些(NN)双自由基。有效地为 3、5、6、PPP-NNSi、PTP-NNSi 的自由基前体和 TTT-NN、TPT-NN 和 PPP-NN 的最终双自由基生长单晶,其结构和分子堆积通过 X 射线衍射研究进行了检查。结果,由于五元环对六元环的阻碍较小,与 PPP-NN 中 NN 和苯基单元之间的扭转(约 29°)相比,TTT-NN 和 TPT-NN 中 NN 和噻吩单元之间的扭转小得多(约 10°)。通过 EPR 和光学光谱结合 DFT 计算研究了所有四个双自由基 TTT-NN、TPT-NN、PTP-NN 和 PPP-NN。通过 SQUID 测量研究了 TTT-NN 和 TPT-NN 的磁化率。发现 TPT-NN 和 TTT-NN 的分子内交换相互作用与通过破对称 DFT 计算计算出的相互作用非常吻合。

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