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Sol-Gel Microspheres Doped with Glycerol: A Structural Insight in Light of Forthcoming Applications in the Polyurethane Foam Industry

机译:甘油掺杂的Sol-Gel微球:结构透视即将在聚氨酯泡沫行业中应用

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摘要

Porous silica-based microspheres encapsulating aqueous glycerol can be potential curing agents for one-component foams (OCFs). Such agents have the advantage of an enhanced sustainability profile on top of being environmentally friendly materials. A synthetically convenient and scalable sol-gel process was used to make silica and organosilica microspheres doped with aqueous glycerol. These methyl-modified silica microspheres, named “GreenCaps”, exhibit remarkable physical and chemical stability. The microspheres were characterized by scanning electron microscopy, transmission electron microscopy at reduced pressure, and cryogenic nitrogen adsorption—desorption analysis. The structure of the materials was also analyzed at the molecular level by diffuse reflectance infrared Fourier transform (DRIFT) spectroscopy. As expected, the degree of methylation affects the degree of encapsulation and pore structure. Microspheres similarly methylated, however, can differ considerably in surface area and pore size due to the templating effect of glycerol on the organosilica structure. The results of the structure analysis reveal that glycerol is efficiently encapsulated, acts as a template, barely leaches over time, but is released by depressurization. A proper application of these microspheres can later on enhance both the environmental and health profile, as well as the technical performance (curing speed, foam quality, and froth thixotropy) of spray polyurethane foams.
机译:包封甘油水溶液的多孔二氧化硅基微球可能是单组分泡沫(OCF)的潜在固化剂。除了是环保材料之外,此类试剂还具有增强的可持续性特征的优势。使用合成上方便且可扩展的溶胶-凝胶工艺来制备掺有甘油水溶液的二氧化硅和有机二氧化硅微球。这些甲基改性的二氧化硅微球称为“ GreenCaps”,具有出色的物理和化学稳定性。通过扫描电子显微镜,减压下的透射电子显微镜和低温氮吸附-解吸分析来表征微球。还通过漫反射红外傅里叶变换(DRIFT)光谱在分子水平上分析了材料的结构。如预期的那样,甲基化程度会影响包封程度和孔结构。然而,由于甘油对有机硅结构的模板化作用,类似地甲基化的微球在表面积和孔径上可能有很大差异。结构分析的结果表明,甘油被有效地包封,作为模板,几乎不随时间浸出,但通过降压释放。适当地使用这些微球以后可以提高环境和健康状况,以及喷涂聚氨酯泡沫的技术性能(固化速度,泡沫质量和泡沫触变性)。

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