Department of Chemistry, Federal University of Sergipe, Av. Marechal Rondon s/n, Cidade Universitária "Prof. José Aloísio de Campos", 491000-000, Sao Cristovao, Sergipe, Brazil.
Department of Organic Chemistry, Institute of Chemistry, University of Campinas, Cidade Universitária Zeferino Vaz s/n, P.O Box 6154, 13083-970, Campinas, Sao Paulo, Brazil.
Carbohydr Polym. 2018 Dec 15;202:11-19. doi: 10.1016/j.carbpol.2018.08.101. Epub 2018 Aug 27.
Crosslinking and functionalizing agents play crucial roles in the properties/applications of cyclodextrin polymers. Here we report the synthesis of water-insoluble cyclodextrin polymers containing l-glutamic acid. In a first route, β-cyclodextrin was crosslinked with citric acid and subsequently functionalized with l-glutamic acid, while a second route involved esterification of β-cyclodextrin with l-glutamic acid, catalyzed by tin octoate. Combined evaluation by FTIR, C CP/MAS NMR and elemental analysis indicated that the sample from the first route had the largest fraction of glutamic acid. Sorption tests with methyl orange showed that the cyclodextrin cavities were slightly more available in the polymer obtained through the second route. Samples were employed as reductant and stabilizer for fast and easy synthesis of silver nanoparticles at room temperature. Brief UV irradiation was sufficient for samples produced by the first route.
交联剂和功能化试剂在环糊精聚合物的性能/应用中起着至关重要的作用。在这里,我们报道了含有 L-谷氨酸的水不溶性环糊精聚合物的合成。在第一种方法中,β-环糊精与柠檬酸交联,然后用 L-谷氨酸功能化,而第二种方法涉及β-环糊精与 L-谷氨酸的酯化反应,由辛酸锡催化。傅里叶变换红外光谱(FTIR)、C CP/MAS 核磁共振和元素分析的综合评价表明,第一种方法得到的样品中谷氨酸的比例最大。用甲基橙进行的吸附试验表明,通过第二种方法得到的聚合物中环糊精空腔的可用性略有增加。这些样品被用作还原剂和稳定剂,用于在室温下快速、轻松地合成银纳米粒子。对于第一种方法制备的样品,只需短暂的紫外辐照。