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聚合物合成中的序列控制。

Sequence control in polymer synthesis.

机构信息

Research Group Nanotechnology for Life Science, Fraunhofer Institute for Applied Polymer Research, Geiselbergstrasse 69, 14476 Potsdam-Golm, Germany.

出版信息

Chem Soc Rev. 2009 Dec;38(12):3383-90. doi: 10.1039/b806413j. Epub 2009 Jul 23.

Abstract

The control over comonomer sequences is barely studied in macromolecular science nowadays. This is an astonishing situation, taking into account that sequence-defined polymers such as nucleic acids and proteins are key components of the living world. In fact, fascinating biological machines such as enzymes, transport proteins, cytochromes or sensory receptors would certainly not exist if evolution had not favored chemical pathways for controlling chirality and sequences. Thus, it seems obvious that synthetic polymers with controlled monomer sequences have an enormous role to play in the materials science of the next centuries. The goal of this tutorial review is to shed light on this highly important but embryonic field of research. Both biological and synthetic mechanisms for controlling sequences in polymerization processes are critically discussed herein. This state-of-the-art overview may serve as a source of inspiration for the development of new generations of synthetic macromolecules.

摘要

目前,在高分子科学领域,对共聚单体序列的控制研究几乎无人涉及。考虑到序列明确的聚合物(如核酸和蛋白质)是生命世界的关键组成部分,这种情况令人惊讶。事实上,如果进化没有偏爱控制手性和序列的化学途径,那么像酶、转运蛋白、细胞色素或感觉受体这样的迷人生物机器肯定不会存在。因此,具有受控单体序列的合成聚合物在下个世纪的材料科学中发挥巨大作用,这似乎是显而易见的。本综述教程的目的是阐明这一高度重要但处于萌芽阶段的研究领域。本文批判性地讨论了聚合过程中控制序列的生物和合成机制。这一最新综述可以为开发新一代合成大分子提供灵感。

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