Baghbanzadeh Mostafa, Molnar Maja, Damm Markus, Reidlinger Claudia, Dabiri Minoo, Kappe C Oliver
Christian Doppler Laboratory for Microwave Chemistry, and Institute of Chemistry, Karl-Franzens-University Graz, Heinrichstrasse 28, Graz, Austria.
J Comb Chem. 2009 Jul-Aug;11(4):676-84. doi: 10.1021/cc900036a.
The application of a high-throughput reaction platform for performing parallel microwave synthesis in sealed HPLC/GC vials contained in a strongly microwave-absorbing silicon carbide plate is described. The use of aluminum crimp caps with PTFE coated silicone septa in combination with an appropriate plate sealing mechanism allows processing of reaction volumes from 0.5-1.5 mL at temperatures of approximately 250 degrees C and pressures of up to approximately 20 bar. A library of 39 2-styrylquinazolin-4(3H)-one derivatives was prepared in a two-step/one-pot parallel fashion involving the initial three-component condensation of four anthranilic acids with acetic anhydride and ammonium acetate at 250 degrees C for 30 min. This was followed by catalyst-free condensation of the resulting 2-methylquinazolinones with a selection of 15 aromatic aldehydes. Compared to single-mode sequential microwave synthesis, the overall processing times for library synthesis could be significantly reduced.
本文描述了一种高通量反应平台的应用,该平台用于在置于强微波吸收碳化硅板中的密封HPLC/GC小瓶中进行平行微波合成。使用带有聚四氟乙烯涂层硅橡胶隔垫的铝压盖,并结合适当的板密封机制,能够在约250℃的温度和高达约20巴的压力下处理0.5 - 1.5 mL的反应体积。以两步/一锅平行方式制备了一个包含39种2-苯乙烯基喹唑啉-4(3H)-酮衍生物的文库,第一步是四种邻氨基苯甲酸与乙酸酐和乙酸铵在250℃下进行初始的三组分缩合反应30分钟。接着是所得的2-甲基喹唑啉酮与15种芳香醛进行无催化剂缩合反应。与单模顺序微波合成相比,文库合成的总体处理时间可显著缩短。