微波辐射
微波食品加热
试剂
有机合成
固相合成
化学合成
相(物质)
化学反应
化学转化
材料科学
微波加热
化学过程
降级(电信)
化学工程
化学
纳米技术
组合化学
工艺工程
有机化学
计算机科学
催化作用
电信
生物化学
工程类
体外
肽
作者
Fahad Al‐Obeidi,Richard E. Austin,John F. Okonya,Daniel R. S. Bond
标识
DOI:10.2174/1389557033488042
摘要
The use of microwave technology in solid-phase organic synthesis has attracted much attention in recent years. The combination of solid support, either as a medium for chemical synthesis or as a carrier for organic reagents, with microwave heating offers several advantages over conventional techniques. Rapid and elevated heating of reaction mixtures can induce the completion of chemical transformations in minutes while several hours or days may be required for the same chemistry under conventional conditions. With decreased time of exposure to high temperatures and lessened thermal degradation, microwave accelerated chemistries often deliver products of higher purity when compared to conventional heating techniques. Several chemical syntheses on solid-phase employing microwave irradiation have been reported in the literature. The reagents, solvents, and equipment selected for microwave-mediated synthesis are important contributors to the success of the chemical transformation. Owing to the timesavings in performing chemical synthesis under microwave irradiation, the technique has become an emerging partner in solid-phase organic synthesis.
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