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碳化硅微滴板中的平行微波化学:综述。

Parallel microwave chemistry in silicon carbide microtiter platforms: a review.

机构信息

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

出版信息

Mol Divers. 2012 Feb;16(1):5-25. doi: 10.1007/s11030-011-9346-x. Epub 2011 Nov 30.

DOI:10.1007/s11030-011-9346-x
PMID:22127640
Abstract

In this review, applications of silicon carbide-based microtiter platforms designed for use in combination with dedicated multimode microwave reactors are described. These platforms are employed not only for the efficient parallel synthesis of compound libraries, but also in the context of high-throughput reaction screening/optimization and a number of other (bio)analytical and biomedical applications. Since the semiconducting plate material (silicon carbide) is strongly microwave absorbing and possesses high thermal conductivity, no temperature gradients across the microtiter plate exist. Therefore, many of the disadvantages experienced in attempting to perform microtiter plate chemistry under conventional microwave conditions can be eliminated. In general, the silicon carbide-based microtiter platforms allow sealed vessel processing (either directly in the well or in glass vials placed into the wells) of volumes ranging from 0.02-3.0 mL at a maximum temperature/pressure limit of 200°C/20 bar. Depending on the specific plate and rotor configuration, a maximum of 80-192 transformations can be carried out in parallel in a single microwave irradiation experiment under strict temperature control. A platform type utilizing HPLC/GC vials as reaction vessels allows analysis directly from the reaction vessel eliminating the need for a transfer step from the reaction to the analysis vial. The latter system is particularly useful for analytical applications as well as reaction optimization/screening.

摘要

在这篇综述中,描述了用于与专用多模微波反应器结合使用的基于碳化硅的微孔板平台的应用。这些平台不仅用于高效的化合物库平行合成,还用于高通量反应筛选/优化以及许多其他(生物)分析和生物医学应用。由于半导体板材料(碳化硅)强烈吸收微波并且具有高导热性,因此微孔板上不存在温度梯度。因此,可以消除在尝试在常规微波条件下进行微孔板化学时遇到的许多缺点。一般来说,基于碳化硅的微孔板平台允许在密封容器中进行处理(直接在孔中或在放置在孔中的玻璃小瓶中),体积范围为 0.02-3.0 毫升,最高温度/压力限制为 200°C/20 巴。根据特定的板和转子配置,在严格的温度控制下,在单次微波辐照实验中可以并行进行多达 80-192 次转化。一种利用 HPLC/GC 小瓶作为反应容器的平台类型允许直接从反应容器进行分析,无需将反应转移到分析小瓶中。后一种系统对于分析应用以及反应优化/筛选特别有用。

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