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Characterization of Soluble Polymer Supported Organic Molecules by Mass Spectrometry

机译:通过质谱法表现可溶性聚合物支持的有机分子

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Syntheses carried out on soluble polymers, such as polyethylene glycol (PEG), benefit the advantages of both solution-phase and solid-phase syntheses. The choice of the reaction solvent governs the polymer solubility. Synthetic steps are conducted under homogeneous conditions whereas purifications are performed by filtration after polymer precipitation. This alternative strategy, known as liquid-phase chemistry, has been investigated to prepare combinatorial libraries. The fact that soluble polymer supported molecules are directly amenable to standard spectroscopic methods, including NMR (~1H, ~(13)C) and ESI or MALDI mass spectrometry (ElectroSpray and Matrix Assisted Laser Desorption lonization) allows to perform to in situ reaction monitoring without the need to release the compound from the polymeric support. We report a general methodology to characterize step by step soluble polymer supported organic molecules by MALDI and ESI mass spectrometry. High throughput analyses were targeted to fullfil combinatorial chemistry requirements. Data acquisition and interpretation were automated through the design of specific experimental protocols and a data managment software. MALDI mass spectrometry was appropriate to analyze pure supported molecules whereas ESI mass spectrometry coupled to liquid chromatography was required to unravel PEG mixtures.
机译:在可溶性聚合物上进行的合成,例如聚乙二醇(PEG),有利于溶液相和固相合成的优点。反应溶剂的选择控制聚合物溶解度。合成步骤在均匀条件下进行,而聚合物沉淀后通过过滤进行纯化。已经研究了这种替代策略,称为液相化学,以制备组合文库。可溶性聚合物负载的分子直接允许标准光谱法,包括NMR(〜1H,〜(13)c)和ESI或MALDI质谱(电喷雾和基质辅助激光解吸总量)允许以原位反应监测进行不需要从聚合物载体中释放化合物。我们报告了一般方法,以通过MALDI和ESI质谱法表征逐步可溶性聚合物支持的有机分子。高通量分析旨在全氟组合化学要求。数据采集​​和解释是通过特定实验协议和数据管理软件的设计自动化的。 MALDI质谱是适合分析纯的负载分子,而偶联与液相色谱偶联的ESI质谱是解开PEG混合物。

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