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首页> 外文期刊>Journal of nanoparticle research: An interdisciplinary forum for nanoscale science and technology >A study of some fundamental physicochemical variables on the morphology of mesoporous silica nanoparticles MCM-41 type
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A study of some fundamental physicochemical variables on the morphology of mesoporous silica nanoparticles MCM-41 type

机译:关于介孔二氧化硅纳米粒子MCM-41型形态的一些基本物理化学变量研究

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摘要

All variables affecting the morphology of mesoporous silica nanoparticles (MSN) should be carefully analyzed in order to truly tailored design their mesoporous structure according to their final use. Although complete control on MCM-41 synthesis has been already claimed, reproducibility and repeatability of results remain a big issue due to the lack of information reported in literature. Stirring rate, reaction volume, and system configuration (i.e., opened or closed reactor) are three variables that are usually omitted, making the comparison of product characteristics difficult. Specifically, the rate of solvent evaporation is seldom disclosed, and its influence has not been previously analyzed. These variables were systematically studied in this work, and they were proven to have a fundamental impact on final particle morphology. Hence, a high degree of circularity (C = 0.97) and monodispersed particle size distributions were only achieved when a stirring speed of 500 rpm and a reaction scale of 500 mL were used in a partially opened system, for a 2 h reaction at 80 degrees C. Well-shaped spherical mesoporous silica nanoparticles with a diameter of 95 nm, a pore size of 2.8 nm, and a total surface area of 954 m(2) g(-1) were obtained. Final characteristics made this product suitable to be used in biomedicine and nanopharmaceutics, especially for the design of drug delivery systems.
机译:应仔细分析影响介孔二氧化硅纳米粒子(MSN)形态的所有变量,以便根据最终用途真正定制其介孔结构。虽然已经声称对MCM-41合成的完全控制,但由于在文献中缺乏信息,因此结果的再现性和可重复性仍然是一个大问题。搅拌速率,反应体积和系统配置(即,打开或封闭的反应器)是通常省略的三个变量,使得产品特性的比较困难。具体地,溶剂蒸发速率很少公开,并且先前未分析其影响。在这项工作中系统地研究了这些变量,并被证明对最终颗粒形态产生根本影响。因此,仅当在部分打开的系统中使用500rpm的搅拌速度和500ml的反应量级时,才能实现高度的圆形度(C = 0.97)和单分散的粒度分布,以在80度下进行2小时反应C.具有直径为95nm,孔径为2.8nm的井形球形介孔纳米颗粒,以及总表面积为954m(2)g(-1)。最终特性使该产品适用于生物医学和纳米钢制品,尤其是针对药物递送系统的设计。

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