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用于识别不同构象葡萄糖的具有光学活性的分级多孔硼酸基团功能化整体柱的简便制备

Facile Fabrication of Hierarchically Porous Boronic Acid Group-Functionalized Monoliths With Optical Activity for Recognizing Glucose With Different Conformation.

作者信息

Wang Yan, Zhang Luwei, Hsu Yu-I, Asoh Taka-Aki, Uyama Hiroshi

机构信息

Department of Applied Chemistry, Graduate School of Engineering, Osaka University, Suita, Japan.

出版信息

Front Chem. 2022 Jun 8;10:939368. doi: 10.3389/fchem.2022.939368. eCollection 2022.

Abstract

At present, various materials based on helical polymers are nanoparticle or microsphere, which is not ease of use in practical application. Accordingly, facile preparation hierarchically porous monolith based on helical polymer needs to be developed. Herein, hierarchically porous boronic acid group-functionalized monoliths that exhibited optical activity were fabricated with a facile method based on crosslinking and polymerization-induced phase separation (CPIPS). Chiral substituted acetylene and achiral substituted acetylene with a boronic acid group were used as monomers. By regulating the composition of the pre-polymerization solution, the permeability and macropore size of the porous structure could be controlled. The hierarchically porous structure and large surface area were confirmed by scanning electron microscopy and nitrogen gas adsorption/desorption isotherms. In particular, the boronic acid functional group that can interact with a -diol group was successfully introduced on the skeleton surface of the monoliths. Further, the main chain of the copolymer that constituted the monoliths exhibited a high content and tacticity, and the monoliths showed good optical activity. Thus, the present study established a facile method to synthesize hierarchically porous boronic acid group-functionalized monoliths with optical activity CPIPS, and the monoliths showed potential in recognition, separation, and adsorption of compound with chirality and -diol groups.

摘要

目前,基于螺旋聚合物的各种材料为纳米颗粒或微球,在实际应用中使用不便。因此,需要开发一种简便的方法来制备基于螺旋聚合物的分级多孔整体材料。在此,采用基于交联和聚合诱导相分离(CPIPS)的简便方法制备了具有光学活性的分级多孔硼酸基团功能化整体材料。将带有硼酸基团的手性取代乙炔和非手性取代乙炔用作单体。通过调节预聚合溶液的组成,可以控制多孔结构的渗透率和大孔尺寸。通过扫描电子显微镜和氮气吸附/脱附等温线证实了分级多孔结构和大表面积。特别地,能够与二醇基团相互作用的硼酸官能团成功引入到整体材料的骨架表面。此外,构成整体材料的共聚物主链具有高含量和规整度,整体材料表现出良好的光学活性。因此,本研究建立了一种利用CPIPS合成具有光学活性的分级多孔硼酸基团功能化整体材料的简便方法,该整体材料在手性和二醇基团化合物的识别、分离和吸附方面具有潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a862/9213758/475cc473f8fc/fchem-10-939368-g007.jpg

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