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Cyclodextrin-assisted synthesis of tailored mesoporous silica nanoparticles

机译:环糊精辅助合成定制的介孔二氧化硅纳米粒子

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摘要

Mesoporous silica nanoparticles (MSNs) have sparked considerable interest in drug/gene delivery, catalysis, adsorption, separation, sensing, antireflection coatings and bioimaging because of their tunable structural properties. The shape, size and pore structure of MSNs are greatly influenced by the type of additives used, e.g., solvent and pore-templating agent. Here, we studied the influence of cyclodextrin (CD) molecules on the formation of MSNs. The nanoparticles over 100 nm in diameter were synthesized by surfactant-templated, hydrolysis–polycondensation reactions in the presence of pristine CD (β-CD) or hydroxypropyl-functionalized CDs (HP-γ-CD and HP-β-CD). Depending on the formulation conditions, differently shaped MSNs, such as bean-like, spherical, ellipsoid, aggregate and faceted were generated. The morphology and size of MSNs varied with the CD-type used. Generally, spherical particles were obtained with β-CD, while a faceted morphology was observed for the particles synthesized using HP-CDs. The particle size could be tuned by adjusting the amount of CD used; increasing the CD concentration led to larger particles. MSNs synthesized in the presence of β-CD displayed a smaller particle size than those produced with HP-functional CDs. FTIR, TGA and solid-state 13C NMR demonstrated the adsorption of CDs on the particle surfaces. The proposed concept allows for the synthesis of silica nanoparticles with control over particle shape and size by adjusting the concentration of additives in a simple, one-pot reaction system for a wide range of applications.
机译:介孔二氧化硅纳米粒子(MSNs)由于其可调的结构特性,引起了对药物/基因传递,催化,吸附,分离,传感,抗反射涂层和生物成像的极大兴趣。 MSN的形状,大小和孔结构在很大程度上受到所用添加剂的类型的影响,例如,溶剂和孔模板剂。在这里,我们研究了环糊精(CD)分子对MSNs形成的影响。在原始CD(β-CD)或羟丙基官能化CD(HP-γ-CD和HP-β-CD)的存在下,通过表面活性剂模板的水解-缩聚反应合成了直径超过100 nm的纳米颗粒。根据配方条件,生成了不同形状的MSN,例如豆状,球形,椭圆形,聚集体和刻面。 MSN的形态和大小随所使用的CD类型而异。通常,用β-CD获得球形颗粒,而使用HP-CD合成的颗粒则观察到多面形态。可以通过调节CD的使用量来调节粒径。增加CD浓度会导致更大的颗粒。在存在β-CD的情况下合成的MSN的粒径要小于使用HP功能CD的MSN。 FTIR,TGA和固态 13 C NMR证明了CD在颗粒表面的吸附。所提出的概念允许通过在简单的一锅法反应系统中调节添加剂的浓度来控制颗粒形状和尺寸,从而控制颗粒形状和尺寸,从而可用于多种应用。

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