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利用亚/超临界水从离散二氧化硅微球形成均匀的三维结构。

Forming Homogeneous Three-Dimensional Structures from Discrete Silica Microspheres Using Sub/Supercritical Water.

作者信息

Karásek Pavel, Planeta Josef, Roth Michal

机构信息

Institute of Analytical Chemistry of the Czech Academy of Sciences, Veveří 97, 60200 Brno, Czech Republic.

出版信息

ACS Appl Mater Interfaces. 2024 Aug 14;16(32):42873-42883. doi: 10.1021/acsami.4c07251. Epub 2024 Jul 31.

DOI:10.1021/acsami.4c07251
PMID:39086239
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11331445/
Abstract

A novel technique for producing highly uniform structures from silica microspheres has been developed and tested. It is based on exploiting the temperature- and pressure-dependent solvent properties of sub/supercritical water toward silicon dioxide. The initial concept aimed to create a "hybrid" capillary chromatographic column on the border between a packed and a monolithic column that would combine the benefits of both. The resultant method that integrates dissolution and coalescence in a continuous process enabled the production of a range of permeable columns with high efficiency and varying sizes. Their internal structures were examined using scanning electron microscopy and characterized using microHPLC chromatography. The structures produced using this method may have diverse applications beyond the scope of analytical chemistry. They prove useful in scenarios where high pressure is necessary because of the high hydraulic resistance of small particles and/or the passing medium with a high flow rate. A simple test of a bridged-microsphere monolithic column and a discrete microsphere-packed column, both after chemical modification to the C18 stationary phase, indicated superior performance of the new type of monolithic columns.

摘要

一种由二氧化硅微球制备高度均匀结构的新技术已被开发并测试。它基于利用亚/超临界水对二氧化硅的温度和压力依赖性溶剂特性。最初的概念旨在在填充柱和整体柱之间的边界创建一种“混合”毛细管色谱柱,该色谱柱将兼具两者的优点。在连续过程中整合溶解和聚结的所得方法能够生产一系列具有高效率和不同尺寸的可渗透柱。使用扫描电子显微镜检查其内部结构,并使用微HPLC色谱进行表征。使用这种方法产生的结构可能在分析化学范围之外有多种应用。它们在由于小颗粒的高水力阻力和/或具有高流速的通过介质而需要高压的情况下证明是有用的。对桥连微球整体柱和离散微球填充柱进行简单测试,两者均在化学改性为C18固定相之后,结果表明新型整体柱具有优异的性能。

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