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负载于天然孢粉素微胶囊上的手性离子液体。

Chiral ionic liquids supported on natural sporopollenin microcapsules.

作者信息

Palazzo Ivan, Mezzetta Andrea, Guazzelli Lorenzo, Sartini Stefania, Pomelli Christian Silvio, Parker Wallace O, Chiappe Cinzia

机构信息

Dipartimento di Farmacia, Università di Pisa Via Bonanno 33 56126 Pisa Italy

Eni, Research & Technical Innovation, Physical Chemistry Department Via Maritano 26, San Donato Milanese 20097 Italy.

出版信息

RSC Adv. 2018 Jun 8;8(38):21174-21183. doi: 10.1039/c8ra03455a.

Abstract

Supported chiral ionic liquids (SILs) were prepared choosing the starting material for the ionic liquid part from the enantiopure stock of the chiral pool (monoterpenoids and an amino acid) and the sporopollenin as an environmentally friendly support. Sporopollenins are microcapsules with naturally well-defined sizes and shapes that can be obtained from pollen grains after removal of the internal cytoplasm and the second shell layer. As thermally stable organic biocompatible structures, sporopollenins have attracted increasing interest in recent years for several applications. Herein, bio-based ILs were anchored onto the surface of sporopollenins obtained from the pollen of , selected as a model pollen grain. These new structures, which present an external positively charged shell, were characterized by physico-chemical techniques (ATR-FTIR, TGA, SEM, EDX, and solid-state C NMR). A metathesis reaction was also performed on selected bio-based IL modified sporopollenins, demonstrating the possibility to switch the surface properties by exploiting well-known IL chemistry.

摘要

通过从手性库(单萜类化合物和一种氨基酸)的对映体纯原料中选择离子液体部分的起始材料,并以孢粉素作为环境友好型载体,制备了负载型手性离子液体(SILs)。孢粉素是具有天然明确尺寸和形状的微胶囊,可在去除内部细胞质和第二层壳层后从花粉粒中获得。作为热稳定的有机生物相容性结构,孢粉素近年来因其多种应用而受到越来越多的关注。在此,将生物基离子液体锚定在从选定为模型花粉粒的花粉中获得的孢粉素表面。这些具有外部带正电外壳的新结构通过物理化学技术(ATR-FTIR、TGA、SEM、EDX和固态碳核磁共振)进行了表征。还对选定的生物基离子液体修饰的孢粉素进行了复分解反应,证明了利用众所周知的离子液体化学来改变表面性质的可能性。

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