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Effects of secondary metal carbonate addition on the porous character of resorcinol-formaldehyde xerogels

机译:添加第二金属碳酸盐对间苯二酚-甲醛干凝胶的多孔性的影响

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摘要

A deeper understanding of the chemistry and physics of growth, aggregation and gelation processes involved in the formation of xerogels is key to providing greater control of the porous characteristics of such materials, increasing the range of applications for which they may be utilised. Time-resolved dynamic light scattering has been used to study the formation of resorcinol-formaldehyde gels in the presence of combinations of Group I (Na and Cs) and Group II (Ca and Ba) metal carbonates. It was found that the combined catalyst composition, including species and times of addition, is crucial in determining the end properties of the xerogels, via its effect on growth of clusters involved in formation of the gel network. Combination materials have textural characteristics within the full gamut offered by each catalyst alone; however, in addition, combination materials which retain the small pores associated with sodium carbonate catalysed xerogels exhibit a narrowing of the pore size distribution, providing an increased pore volume within an application-specific range of pore sizes. We also show evidence of pore size tunability while maintaining ionic strength, which significantly increases the potential of such systems for biological applications.
机译:对干凝胶形成所涉及的生长,聚集和胶凝过程的化学和物理学的更深入了解,是对此类材料的多孔特性提供更​​好控制,增加其可利用范围的关键。时间分辨动态光散射已用于研究在第I组(Na和Cs)和第II组(Ca和Ba)金属碳酸盐结合存在下间苯二酚-甲醛凝胶的形成。已经发现,包括催化剂的种类和添加时间在内的组合的催化剂组合物,通过其对参与凝胶网络形成的簇的生长的影响,对于确定干凝胶的最终性能至关重要。组合材料在每种催化剂单独提供的全部色域内具有质构特性;然而,此外,保留与碳酸钠催化的干凝胶相关的小孔的组合材料显示出孔径分布的变窄,从而在特定的孔径范围内提供了增加的孔体积。我们还显示了在保持离子强度的同时可调节孔径的证据,这大大提高了此类系统在生物应用中的潜力。

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