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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >A Hierarchical Study on Load/Release Kinetics of Guest Molecules into/from Mesoporous Silica Thin Films
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A Hierarchical Study on Load/Release Kinetics of Guest Molecules into/from Mesoporous Silica Thin Films

机译:客体分子向/从中孔二氧化硅薄膜中加载/释放动力学的分层研究

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The load/release behaviors of a fluorescent molecule, fluorescein isothiocyanate (FITC), using mesoporous silica thin films as hosts are investigated through a hierarchical study of three parameters (i.e., loading methods, porous structures, and morphologies) from microscopic to macroscopic levels. Three different methods, physical adsorption (AD), entrapment (EN), and cleavable binding (CB), were used to load FITC into three-dimensional hexagonal (3DH) mesoporous silica thin films. On the basis of the results of fluorescence spectroscopies, we found a diffusion-controlled release (first-order release) for the AD-3DH case, a dissolution-controlled release (zero-order release) for the EN-3DH case, and a stimuli-responsive release for the CB-3DH case. Mesoporous silica thin films with two kinds of mesostructures, two-dimensional hexagonal (2DH) and 3DH, were successfully synthesized. The adsorption and release kinetics, including the dissociation constant (K_d) and half-life value (t_(1/2)), for the 2DH and 3DH films are similar due to the existence of micropores in both cases, although the 2DH film exhibited a larger maximum' adsorption amount (N_(ads)~∞) than the 3DH film. Linear and circular patterns with a 3DH mesostructure were fabricated. Compared with the 3DH film, the patterns exhibit more external pore entrances, resulting in easier adsorption and desorption of FITC molecules. Unlike conventional mesoporous solids, we demonstrated that mesoporous thin films with the desired loading method, mesostructure, and morphology could serve as a new substrate for controlled release systems.
机译:通过对三个参数(即加载方法,多孔结构和形态)从微观到宏观水平进行分层研究,研究了以介孔二氧化硅薄膜为主体的荧光分子异硫氰酸荧光素(FITC)的负载/释放行为。三种不同的方法,物理吸附(AD),截留(EN)和可裂解结合(CB),用于将FITC加载到三维六边形(3DH)中孔二氧化硅薄膜中。根据荧光光谱的结果,我们发现了AD-3DH情况的扩散控制释放(一级释放),EN-3DH情况的溶出控制释放(零级释放),以及CB-3DH病例的刺激响应释放。成功地合成了具有两种介孔结构的二维六方晶(2DH)和3DH介孔二氧化硅薄膜。由于2DH和3DH膜均表现出微孔的存在,因此2DH和3DH膜的吸附和释放动力学(包括解离常数(K_d)和半衰期值(t_(1/2))相似。最大吸附量(N_(ads)〜∞)比3DH膜大。制作具有3DH介观结构的线性和圆形图案。与3DH膜相比,这些图案显示出更多的外部孔隙入口,从而使FITC分子更易于吸附和解吸。与常规的介孔固体不同,我们证明了具有所需加载方法,介孔结构和形态的介孔薄膜可以用作控释系统的新基质。

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