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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Mesoporous Silica Nanoparticles under Sintering Conditions: A Quantitative Study
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Mesoporous Silica Nanoparticles under Sintering Conditions: A Quantitative Study

机译:烧结条件下介孔二氧化硅纳米粒子的定量研究

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Thin films made of mesoporous silica nanoparticles (MSNs) are finding new applications in catalysis, optics, as well as in biomedicine. The fabrication of MSNs thin films requires a precise control over the deposition and sintering of MSNs on flat substrates. In this study, MSNs of narrow size distribution (150 nm) are synthesized, and then assembled onto flat silicon substrates, by means of a dip-coating process. Using concentrated MSN colloidal solutions (19.5 mg mL(-1) SiO2), withdrawal speed of 0.01 mm s(-1), and well-controlled atmospheric conditions (ambient temperature, similar to 70% of relative humidity), monolayers are assembled under well-structured compact patterns. The thin films are sintered up to 900 degrees C, and the evolution of the MSNs size distributions are compared to those of their pore volumes and densities. Particle size distributions of the sintered thin films were precisely fitted using a model specifically developed for asymmetric particle size distributions. With increasing temperature, there is first evidence of intraparticle reorganization/relaxation followed by intraparticle sintering followed by interparticle sintering. This study is the first to quantify the impact of sintering on MSNs assembled as thin films.
机译:由中孔二氧化硅纳米粒子(MSN)制成的薄膜正在催化,光学和生物医学领域得到新的应用。 MSN薄膜的制造需要精确控制平面基板上MSN的沉积和烧结。在这项研究中,合成了窄尺寸分布(150 nm)的MSN,然后通过浸涂工艺将其组装到平坦的硅基板上。使用浓缩的MSN胶体溶液(19.5 mg mL(-1)SiO2),撤除速度为0.01 mm s(-1)和良好控制的大气条件(环境温度,类似于相对湿度的70%),在结构良好的紧凑型图案。将薄膜烧结到900摄氏度,然后将MSNs尺寸分布的变化与其孔体积和密度的变化进行比较。使用专门为不对称粒径分布开发的模型精确拟合烧结薄膜的粒径分布。随着温度的升高,首先存在颗粒内部重组/松弛,随后的颗粒内部烧结,随后的颗粒间烧结的证据。这项研究是第一个量化烧结对组装成薄膜的MSN的影响的研究。

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