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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Preparation of Narrowly Size Distributed Metal-Containing Polymer Latexes by Miniemulsion and Other Emulsion Techniques: Applications for Nanolithography
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Preparation of Narrowly Size Distributed Metal-Containing Polymer Latexes by Miniemulsion and Other Emulsion Techniques: Applications for Nanolithography

机译:通过细乳液和其他乳液技术制备窄尺寸分布的含金属聚合物胶乳:纳米光刻的应用

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It is demonstrated that the miniemulsion polymerization technique allows the preparation of highly uniform and practically monodisperse latex particles containing a hydrophobic metal complex like platinum(II)acetylacetonate, indium(III)acetylacetonate, zinc(II)tetramethylheptadionate, zincphthalocya-nine, and chromium(III)benzoylacetonate, respectively, with different loading capacities. For some platinum and iron complexes, the homogeneity of the latexes can be improved even further by adapted emulsion techniques. By choosing different amounts of surfactant, we can adjust the particle size between 100 and 260 nm. To obtain larger particles up to 370 run for a given metal complex, we performed an additional feeding of monomer. In this way, the particles can be easily modified by changing the polymer or the copolymer composition. Using a pure polymer core and semicontinuously adding a complex/monomer mixture leads to an increased size of the particles, which can contain additional metal complexes. The methodology was also applied for the preparation of alloyed Fe/Pt particles. The concentration relations were analyzed by inductively coupled plasma spectroscopy (ICP) and, mostly, energy-dispersive X-ray spectroscopy (EDX). When particles are deposited onto a substrate, the high homogeneity of the particle size results in hexagonally well-ordered monolayers of the metal-containing polymer particles. Such an encapsulation of metal complexes into particles of defined size makes them suitable for a wide variety of applications, especially in the context of nanolithography.
机译:结果表明,细乳液聚合技术可以制备高度均匀且几乎单分散的乳胶颗粒,其中包含疏水性金属络合物,例如乙酰丙酮铂(II),乙酰丙酮铟(III),四甲基庚二酸锌(II),邻苯二甲酰锌和铬( III)苯甲酰基丙酮酸酯,分别具有不同的负载能力。对于某些铂和铁络合物,可通过采用适当的乳液技术进一步提高胶乳的均匀性。通过选择不同量的表面活性剂,我们可以在100至260 nm之间调整粒径。对于给定的金属络合物,为了获得最大370纳米的较大颗粒,我们进行了单体的额外进料。这样,可以通过改变聚合物或共聚物组成来容易地改性颗粒。使用纯聚合物核并半连续添加络合物/单体混合物会导致颗粒尺寸增加,其中可能包含其他金属络合物。该方法还适用于制备合金化的Fe / Pt颗粒。通过电感耦合等离子体光谱法(ICP),主要是能量分散X射线光谱法(EDX)分析了浓度关系。当颗粒沉积在基材上时,颗粒尺寸的高度均匀性会导致含金属的聚合物颗粒呈六边形排列整齐的单层。这种将金属络合物包封成确定尺寸的颗粒使得它们适用于多种应用,尤其是在纳米光刻的情况下。

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