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Tailored Synthesis of Core-Shell Mesoporous Silica Particles—Optimization of Dye Sorption Properties

机译:核-壳介孔二氧化硅颗粒的量身合成—染料吸附性能的优化

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摘要

Monodisperse spherical silica particles, with solid cores and mesoporous shells (SCMS), were synthesized at various temperatures using a one-pot method utilizing a cationic surfactant template. The temperature of the synthesis was found to significantly affect the diameters of both the cores (ca. 170–800 nm) and shells (ca. 11–80 nm) of the particles, which can be tailored for specific applications that require a high specific surface area of the nanocarriers (mesoporous shells) and simultaneously their mechanical robustness for, e.g., facile isolation from suspensions (dense cores). The applied method enabled the formation of the relatively thick mesoporous shells at conditions below room temperature. Radially ordered pores with narrow distributions of their sizes in 3–4 nm range were found in the shells. The adsorption ability of the SCMS particles was studied using rhodamine 6G as a model dye. Decolorization of the dye solution in the presence of the SCMS particles was correlated with their structure and specific surface area and reached its maximum for the particles synthesized at 15 °C. The presented strategy may be applied for the fine-tuning of the structure of SCMS particles and the enhancement of their adsorption capabilities.
机译:使用阳离子表面活性剂模板的一锅法在各种温度下合成具有固体核和中孔壳(SCMS)的单分散球形二氧化硅颗粒。发现合成温度会显着影响颗粒的核(约170–800 nm)和壳(约11–80 nm)的直径,可以针对需要高比重的特定应用量身定制纳米载体(中壳)的表面积以及同时的机械强度,例如,可以轻松地从悬浮液(致密核)中分离出来。所应用的方法能够在低于室温的条件下形成相对较厚的中孔壳。在壳中发现径向有序的孔,其尺寸在3-4 nm范围内分布狭窄。使用罗丹明6G作为模型染料研究了SCMS颗粒的吸附能力。在SCMS颗粒存在下,染料溶液的脱色与其结构和比表面积相关,并在15°C时达到最大。提出的策略可用于微调SCMS颗粒的结构和提高其吸附能力。

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