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高通量微波辅助有机合成:从碳化硅微量滴定板中的自动顺序式文库生成格式转向平行式文库生成格式。

High-throughput microwave-assisted organic synthesis: moving from automated sequential to parallel library-generation formats in silicon carbide microtiter plates.

作者信息

Kremsner Jennifer M, Stadler Alexander, Kappe C Oliver

机构信息

Christian Doppler Laboratory for Microwave Chemistry (CDLMC) and Institute of Chemistry, Karl-Franzens-University, Heinrichstrasse 28, A-8010 Graz, Austria.

出版信息

J Comb Chem. 2007 Mar-Apr;9(2):285-91. doi: 10.1021/cc060138z.

Abstract

A 48 deep-well microtiter plate system for sealed vessel parallel microwave synthesis is described. The plate consists of a standard 6 x 8 matrix of 48 wells with a maximum working volume of 300 microL and is made out of strongly microwave-absorbing sintered silicon carbide. In combination with an alumina sealing plate equipped with adequate conical bore holes for sample withdrawal, the setup can be used for microwave processing at temperatures up to approximately 200 degrees C and 20 bar of pressure. The microtiter plate setup displays excellent temperature and reaction homogeneity and was used for the generation of a 30-member library of 2-aminopyrimidines.

摘要

描述了一种用于密封容器平行微波合成的48孔深孔微量滴定板系统。该板由标准的6×8矩阵的48个孔组成,最大工作体积为300微升,由强微波吸收性烧结碳化硅制成。与配备有用于样品取出的适当锥形孔的氧化铝密封板相结合,该装置可用于在高达约200℃的温度和20巴的压力下进行微波处理。微量滴定板装置显示出优异的温度和反应均匀性,并用于生成一个由30个成员组成的2-氨基嘧啶文库。

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