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Nanoarchitecting Hierarchical Mesoporous Siliceous Frameworks: A New Way Forward

机译:纳米建筑学层次介孔硅质框架:前进的新方向

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摘要

Owing to their attractive physicochemical and morphological attributes, mesoporous silica nanoparticles (MSNs) have attracted increasing attention over the past two decades for their utilization in diversified fields. Despite the success, these highly stable siliceous frameworks often suffer from several shortcomings of compatibility issues, uncontrollable degradability leading to long-term retention in vivo, and substantial unpredictable toxicity risks, as well as deprived drug encapsulation efficiency, which could limit their applicability in medicine. Along this line, various advancements have been made in re-engineering the stable siliceous frameworks, such as the incorporation of diverse molecular organic, as well as inorganic (cationic and anionic) species and monitoring the processing, as well as formulation parameters, resulting in the hetero-nanostructures of irregular-shaped (Janus and multi-podal) and dynamically-modulated (deformable solids) architectures with high morphological complexity. Insightfully, this review gives a brief emphasis on re-engineering such stable siliceous frameworks through modifying their intrinsic structural and physicochemical attributes. In conclusion, we recapitulate the review with exciting perspectives.
机译:由于它们有吸引力的物理化学和形态学属性,中孔二氧化硅纳米粒子(MSNS)在过去二十年中引起了越来越多的关注,以便它们在多元化领域的利用。尽管取得了成功,这些高度稳定的硅质框架经常遭受兼容性问题的几个缺点,无法控制的可降解性,导致体内长期保留,以及大量不可预测的毒性风险,以及剥夺药物封装效率,这可能会限制其在医学中的适用性。沿着这一线路,在重新设计稳定的硅质框架中,使各种进步进行了各种进步,例如掺入不同的分子有机物,以及无机(阳离子和阴离子)物种并监测加工,以及制剂参数,导致具有高形态复杂性的不规则形状(Janus和多瓣型)和动态调制(可变形固体)架构的异质纳米结构。介绍,本综述简要强调通过修改其内在结构和物理化学属性来重新设计这种稳定的硅质框架。总之,我们通过令人兴奋的观点预算审查。

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