Suppr超能文献

[基于超分子衍生多孔有机聚合物的样品预处理方法研究进展]

[Recent advances in research on sample pretreatment methods based on supramolecular-derived porous organic polymers].

作者信息

Kang Jing-Yan, Shi Yan-Ping

机构信息

CAS Key Laboratory of Chemistry of Northwestern Plant Resources, Lanzhou Institute of Chemical Physics, Chinese Academy of Sciences, Lanzhou 730000, China.

出版信息

Se Pu. 2024 Jun;42(6):496-507. doi: 10.3724/SP.J.1123.2023.09001.

Abstract

Porous organic polymers (POPs) are a class of materials composed of organic building blocks usually consisting of the elements C, H, O, N, and B and other light elements connected by covalent bonds. Owing to the diversity of synthesis methods in organic chemistry, POPs can be prepared by Suzuki coupling, Sonogashira-Hagihara cross-coupling, Schiff-base condensation, Knoevenagel condensation, and Friedel-Crafts alkylation. POPs show great application potential in the field of sample pretreatment because of their large specific surface area, adjustable pore size, high tailorability, and easy modification. The design of new functional building blocks is an important factor in advancing the development of POPs and is key to the efficient separation and enrichment of target molecules in complex substrates. In recent years, supramolecular-derived compounds have provided new inspiration and breakthroughs in the construction of POPs on account of their excellent host-guest recognition properties, simple functionalization strategies, and adjustable topological configurations. The "cavitand-to-framework" approach, that is, the knitting of 0D macrocycles into hierarchical 2D or 3D POPs using suitable linkers, and extension of the research scope of supramolecular chemistry from discrete cavities to rigidly layered porous organic frameworks can lead to significant improvements in the porosity and stability of supramolecular-derived compounds. They can also provide an effective means to expand the structural diversity of POPs and generate layered structures with high porosity. This review summarizes the preparation strategies and structural characteristics of supramolecular-derived POPs with different structures, such as crown ether-based POPs, cyclodextrin-based POPs, and calixarene-based POPs. The promising applications of these materials in sample pretreatment focusing on food analysis and environmental monitoring, including epoxides, organic dyes, heavy metals, algatoxins, halogens, and antibiotic drugs, are then summarized. Next, the extraction mechanisms mainly attributed to host-guest recognition, stacking, and hydrogen-bonding and electrostatic interactions between the supramolecular structures and analytes are described. The key role and potential advantages of the different preparation strategies and structural characteristics of these POPs in sample pretreatment are also discussed. Finally, the future prospects and remaining challenges of supramolecular-derived POPs are proposed. Supramolecular-derived POPs can not only achieve the rapid and selective extraction of target analytes during sample pretreatment but also improve the extraction effect of online solid phase extraction technologies. However, although numerous supramolecular-derived POPs have been developed, few have been applied in the field of sample pretreatment. Thus, the expansion of the application potential of more POP materials requires further exploration and research. The design and synthesis of supramolecular-derived POPs with highly selective recognition performance remains an important research direction in the field of sample pretreatment.

摘要

多孔有机聚合物(POPs)是一类由有机结构单元组成的材料,这些结构单元通常由碳(C)、氢(H)、氧(O)、氮(N)、硼(B)等元素以及其他轻元素通过共价键连接而成。由于有机化学中合成方法的多样性,POPs可以通过铃木耦合、索尼加希拉-萩原交叉耦合、席夫碱缩合、克诺文纳格尔缩合和傅克烷基化反应来制备。POPs因其比表面积大、孔径可调、可剪裁性高以及易于修饰等特点,在样品预处理领域展现出巨大的应用潜力。新型功能结构单元的设计是推动POPs发展的重要因素,也是在复杂基质中高效分离和富集目标分子的关键。近年来,超分子衍生化合物因其优异的主客体识别性能、简单的功能化策略和可调的拓扑结构,为POPs的构建提供了新的灵感和突破。“穴状配体到框架”的方法,即使用合适的连接体将零维大环编织成分级二维或三维POPs,以及将超分子化学的研究范围从离散的空腔扩展到刚性层状多孔有机框架,可以显著提高超分子衍生化合物的孔隙率和稳定性。它们还可以提供一种有效的手段来扩大POPs的结构多样性,并生成具有高孔隙率的层状结构。本文综述了不同结构的超分子衍生POPs的制备策略和结构特征,如基于冠醚的POPs、基于环糊精的POPs和基于杯芳烃的POPs。接着总结了这些材料在以食品分析和环境监测为重点的样品预处理中的应用前景,包括环氧化物、有机染料、重金属、藻毒素、卤素和抗生素药物等。然后描述了主要归因于超分子结构与分析物之间的主客体识别、堆积以及氢键和静电相互作用的萃取机制。还讨论了这些POPs不同的制备策略和结构特征在样品预处理中的关键作用和潜在优势。最后,提出了超分子衍生POPs的未来前景和尚存的挑战。超分子衍生POPs不仅可以在样品预处理过程中实现对目标分析物的快速选择性萃取,还可以提高在线固相萃取技术的萃取效果。然而,尽管已经开发出众多超分子衍生POPs,但很少有应用于样品预处理领域。因此,进一步挖掘和研究更多POP材料的应用潜力十分必要。设计和合成具有高选择性识别性能的超分子衍生POPs仍然是样品预处理领域的一个重要研究方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0dae/11165388/5ff11ea07847/img_1.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验