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由大分子构建的手性磁性杂化材料及其手性应用。

Chiral magnetic hybrid materials constructed from macromolecules and their chiral applications.

作者信息

Zhong Hai, Zhao Biao, Deng Jianping

机构信息

State Key Laboratory of Chemical Resource Engineering and College of Materials Science and Engineering, Beijing University of Chemical Technology, Beijing 100029, China.

出版信息

Nanoscale. 2021 Jul 15;13(27):11765-11780. doi: 10.1039/d1nr01939b.

Abstract

Chirality is a fundamental and ubiquitous feature of living organisms in nature. Magnetic materials, in particular magnetic nanoparticles (MNPs), show some interesting properties such as large specific surface area, easy surface modification, magnetic responsivity and separation ability. Integrating MNPs with chirality in a single material will undoubtedly create a large number of advanced multi-functional materials. Despite the great advancements made in this area, there have been no review articles to summarize the relevant studies. The present work reviews the major progress recently made in constructing chiral magnetic hybrid materials (CMHMs) using macromolecules, which are classified based on the primary chiral macromolecular organic components, namely, biological polymers and synthetic polymers, and the applications of the resulting chiral hybrids in chiral research fields, including asymmetric catalysis, enzymatic resolution, chromatographic separation, enantioselective crystallization and enantioselective adsorption, are also summarized. The challenges and prospects of related research fields are proposed in the last section.

摘要

手性是自然界中生物有机体的一个基本且普遍存在的特征。磁性材料,尤其是磁性纳米粒子(MNPs),具有一些有趣的特性,如大比表面积、易于表面修饰、磁响应性和分离能力。将MNPs与手性整合到单一材料中无疑会创造出大量先进的多功能材料。尽管该领域取得了巨大进展,但尚无综述文章总结相关研究。本工作综述了最近在使用大分子构建手性磁性杂化材料(CMHMs)方面取得的主要进展,这些材料根据主要的手性大分子有机成分进行分类,即生物聚合物和合成聚合物,并且还总结了所得手性杂化物在手性研究领域的应用,包括不对称催化、酶法拆分、色谱分离、对映选择性结晶和对映选择性吸附。最后一部分提出了相关研究领域的挑战和前景。

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