论文标题
通过顺序浸润合成,在Al2O3生长过程中P(S-R-MMA)膜中反应性位点的密度的影响
Effect of the Density of Reactive Sites in P(S-r-MMA) Film During Al2O3 Growth by Sequential Infiltration Synthesis
论文作者
论文摘要
顺序浸润合成(SIS)由聚合物膜的金属有机前体和共反应蒸气循环组成。 SIS过程表征了两个方面:聚合物基质中的前体分子扩散,而前体分子通过化学反应将其置入聚合物膜中。在本文中,我们使用三甲基铝(TMA)(TMA)和H2O研究了氧化铝合成的SIS过程,并在多变量的MMA含量的聚(苯乙烯 - 甲基甲基甲基丙烯酸甲酯)(苯乙烯 - 偶然 - 甲基甲基丙烯酸酯)(P(S-R-MMA)的薄膜中。 P(S-R-MMA)膜中生长的氧化铝数量线性取决于MMA含量。共聚物基质中的MMA浓度相对较低,足以保证聚合物膜中氧化铝的体积生长。在纯聚苯乙烯中,金属氧化物种子在膜的地下区域生长。原位动态光谱椭圆法(SE)分析提供了有关原始P(S-R-MMA)矩阵中TMA扩散率的定量信息,这是MMA级分的函数,从而使过程动力学与聚合物膜中反应性位点密度的函数进一步了解。这项工作提高了对浸润合成机制的理解,并提供了一种实用方法来扩展聚合物库,通过在聚合物链中引入反应性位点可以有效渗透聚合物。
Sequential infiltration synthesis (SIS) consists in a controlled sequence of metal organic precursors and co-reactant vapor exposure cycles of polymer films. Two aspects characterize a SIS process: precursor molecule diffusion within the polymer matrix and precursor molecule entrapment into polymer films via chemical reaction. In this paper, we investigated SIS process for the alumina synthesis using trimethylaluminum (TMA) and H2O in thin films of poly(styrene-random-methyl methacrylate) (P(S-r-MMA)) with variable MMA content. The amount of alumina grown in the P(S-r-MMA) films linearly depends on MMA content. A relatively low concentration of MMA in the copolymer matrix is enough to guarantee the volumetric growth of alumina in the polymer film. In pure polystyrene, metal oxide seeds grow in the sub-surface region of the film. In-situ dynamic spectroscopic ellipsometry (SE) analyses provide quantitative information about TMA diffusivity in pristine P(S-r-MMA) matrices as a function of MMA fraction, allowing further insight into the process kinetics as a function of the density of reactive sites in the polymer film. This work improves the understanding of infiltration synthesis mechanism and provides a practical approach to potentially expand the library of polymers that can be effectively infiltrated by introducing reactive sites in the polymer chain.