Rambo Brett M, Silver Eric S, Bielawski Christopher W, Sessler Jonathan L
Department of Chemistry and Biochemistry, The University of Texas at Austin, Austin, TX.
Top Heterocycl Chem. 2010 Jan 1;25(2010):1-37. doi: 10.1007/7081_2010_39.
This chapter covers recent advances in the development of polymeric materials containing discrete heterocyclic anion receptors, and focuses on advances in anion binding and chemosensor chemistry. The development of polymers specific for anionic species is a relatively new and flourishing area of materials chemistry. The incorporation of heterocyclic receptors capable of complexing anions through non-covalent interactions (e.g., hydrogen bonding and electrostatic interactions) provides a route to not only sensitive but also selective polymer materials. Furthermore, these systems have been utilized in the development of polymers capable of extracting anionic species from aqueous environments. These latter materials may lead to advances in water purification and treatment of diseases resulting from surplus ions.
本章涵盖了含离散杂环阴离子受体的聚合物材料开发的最新进展,并着重介绍了阴离子结合和化学传感器化学方面的进展。针对阴离子物种的聚合物开发是材料化学中一个相对较新且蓬勃发展的领域。通过非共价相互作用(如氢键和静电相互作用)络合阴离子的杂环受体的引入,不仅为制备灵敏而且具有选择性的聚合物材料提供了一条途径。此外,这些体系已被用于开发能够从水环境中提取阴离子物种的聚合物。后一类材料可能会在水净化以及由离子过剩导致的疾病治疗方面取得进展。