首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Chiral porous hybrid particles constructed by helical substituted polyacetylene covalently bonded organosilica for enantioselective release
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Chiral porous hybrid particles constructed by helical substituted polyacetylene covalently bonded organosilica for enantioselective release

机译:由螺旋取代的聚乙炔共价键合的有机二氧化硅构成的手性多孔杂化颗粒,用于对映选择性释放

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Hybrid materials are interesting because they combine the advantages of multiple components in one material entity. This article reports on a new type of chiral porous hybrid particle constructed by helical substituted polyacetylene and silica. To prepare the hybrid particles, chirally helical substituted acetylene copolymers containing pendent Si-O-Et groups were first synthesized and subsequently used as macromolecular silane couplers to perform a sol gel reaction with TEOS. After aging, the designed hybrid particles were fabricated. Phase separation in the sol gel reaction endowed the hybrid particles with abundant pores. In the resulting hybrid particles, inorganic silica constituted the rigid framework, whereas the organic helical substituted polyacetylene bonded with the framework and offered optical activity. SEM images confirmed the formation of spherical particles with regular morphology and porous structure. Circular dichroism and UV-vis absorption spectra demonstrated that the helical polymer chains had a preferential helicity and considerable optical activity in the hybrid particles. The hybrid materials demonstrated the capability of enantioselectively releasing cinchona alkaloid, which was used to model chiral drugs. The release process was found to be influenced by temperature: low temperature was more favorable for enantio-differentiating release.
机译:混合材料之所以有趣,是因为它们在一个材料实体中结合了多个组件的优点。本文报道了一种由螺旋取代的聚乙炔和二氧化硅构成的新型手性多孔杂化颗粒。为了制备杂化颗粒,首先合成含有侧基Si-O-Et基团的手性螺旋取代的乙炔共聚物,然后将其用作大分子硅烷偶联剂以与TEOS进行溶胶-凝胶反应。老化后,制造出设计的杂化颗粒。溶胶-凝胶反应中的相分离赋予杂化颗粒大量孔。在所得的杂化颗粒中,无机二氧化硅构成刚性骨架,而有机螺旋取代的聚乙炔与骨架结合并提供光学活性。 SEM图像证实了具有规则形态和多孔结构的球形颗粒的形成。圆二色性和紫外可见吸收光谱表明,在杂化颗粒中,螺旋聚合物链具有优先的螺旋度和相当大的光学活性。杂种材料展示了对映体选择性释放金鸡纳生物碱的能力,该生物碱用于建模手性药物。发现释放过程受温度影响:低温更有利于对映异构释放。

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