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Coding and decoding libraries of sequence-defined functional copolymers synthesized via photoligation

机译:通过光连接合成的序列定义的功能共聚物的编码和解码库

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摘要

Designing artificial macromolecules with absolute sequence order represents a considerable challenge. Here we report an advanced light-induced avenue to monodisperse sequence-defined functional linear macromolecules up to decamers via a unique photochemical approach. The versatility of the synthetic strategy-combining sequential and modular concepts-enables the synthesis of perfect macromolecules varying in chemical constitution and topology. Specific functions are placed at arbitrary positions along the chain via the successive addition of monomer units and blocks, leading to a library of functional homopolymers, alternating copolymers and block copolymers. The in-depth characterization of each sequence-defined chain confirms the precision nature of the macromolecules. Decoding of the functional information contained in the molecular structure is achieved via tandem mass spectrometry without recourse to their synthetic history, showing that the sequence information can be read. We submit that the presented photochemical strategy is a viable and advanced concept for coding individual monomer units along a macromolecular chain.
机译:设计具有绝对序列顺序的人工大分子是一个巨大的挑战。在这里,我们报告一种先进的光诱导途径,通过独特的光化学方法,将单分散序列定义的功能线性大分子直至十聚体。结合顺序和模块化概念的合成策略具有多功能性,可以合成化学组成和拓扑各不相同的理想大分子。通过连续添加单体单元和嵌段,可将特定功能置于链上的任意位置,从而形成功能均聚物,交替共聚物和嵌段共聚物的库。每个序列定义的链的深入表征证实了大分子的精确性。分子结构中包含的功能信息的解码是通过串联质谱法完成的,而无需依靠其合成历史,这表明可以读取序列信息。我们认为,提出的光化学策略是沿着大分子链编码单个单体单元的可行和先进的概念。

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