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Microwave-assisted synthesis of oligothiophene semiconductors in aqueous media using silica and chitosan supported Pd catalysts

机译:使用二氧化硅和壳聚糖负载的钯催化剂在水性介质中微波辅助合成低聚噻吩半导体

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We report an innovative heterogeneous procedure for the preparation of highly pure thiophene oligomers via microwave-assisted Pd catalysis by using silica-and chitosan- supported Pd complexes. This approach is very efficient and greener than the existing homogeneous methodology as it combines a very efficient reaction with improved catalyst separation. Our new, efficient and cleaner microwave approach smoothly afforded the preparation of coupled products in high yields ( up to 87% isolated yield, 30-100 min). Thienyl iodides or activated bromides were employed as starting materials and KF as base. The microwave reaction was carried out in aqueous ethanol. The heterogeneous catalyst can be easily removed from the reaction mixture by filtration and reused in consecutive reactions ( up to 4 times).
机译:我们报告了一种创新的异质程序,该程序通过使用硅胶和壳聚糖负载的Pd络合物通过微波辅助Pd催化制备高纯度的噻吩低聚物。与现有的均相方法相比,该方法非常有效且环保,因为它结合了非常有效的反应和改进的催化剂分离效果。我们新颖,高效,清洁的微波方法可平稳地提供高收率的偶联产物制备(30-100分钟内分离产率高达87%)。噻吩碘化物或活化的溴化物用作原料,KF作为碱。微波反应在乙醇水溶液中进行。通过过滤可以很容易地从反应混合物中除去非均相催化剂,并将其重新用于连续的反应中(最多4次)。

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