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首页> 外文期刊>Angewandte Chemie >Protection-Group-Free Synthesis of Sequence-Defined Macromolecules via Precision lambda-Orthogonal Photochemistry
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Protection-Group-Free Synthesis of Sequence-Defined Macromolecules via Precision lambda-Orthogonal Photochemistry

机译:通过精确的Lambda-Orthogonogressticryse免受保护 - 无组合序列定义的大分子合成

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摘要

An advanced light-induced avenue to monodisperse sequence-defined linear macromolecules via a unique photochemical protocol is presented that does not require any protection-group chemistry. Starting from a symmetrical core unit, precision macromolecules with molecular weights up to 6257.10gmol(-1) are obtained via a two-monomer system: a monomer unit carrying a pyrene functionalized visible light responsive tetrazole and a photo-caged UV responsive diene, enabling an iterative approach for chain growth; and a monomer unit equipped with a carboxylic acid and a fumarate. Both light-induced chain growth reactions are carried out in a lambda-orthogonal fashion, exciting the respective photosensitive group selectively and thus avoiding protecting chemistry. Characterization of each sequence-defined chain (size-exclusion chromatography (SEC), high-resolution electrospray ionization mass spectrometry (ESI-MS), and NMR spectroscopy), confirms the precision nature of the macromolecules.
机译:通过唯一的光化学协议提出了一种先进的光学诱导的大道,通过独特的光化学协议提出了一种不需要任何保护组化学。 从对称核心单元开始,通过双单体系统获得具有高达6257.10gmol(-1)的精密大分子:通过双单体系统获得:一种单体单元,其携带芘官能化可见光响应四唑和光笼式的UV响应二烯,实现 连锁增长的迭代方法; 和一个配备有羧酸和富马酸盐的单体单元。 光诱导的链生长反应均以λ-正交的方式进行,选择性地激发各自的感光组,从而避免保护化学。 每个序列定义链的表征(尺寸排阻色谱(SEC),高分辨率电喷雾电离质谱(ESI-MS)和NMR光谱)证实了大分子的精确性。

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