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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Alkylated Cage Silsesquioxane Forming a Long-Range Straight Ordered Hierarchical Lamellar Nanostructure
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Alkylated Cage Silsesquioxane Forming a Long-Range Straight Ordered Hierarchical Lamellar Nanostructure

机译:烷基化笼形硅倍半氧烷形成长程直的有序分层层状纳米结构

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摘要

An alkylated cage silsesquioxane (1), targeting for a new class of bottom-up-type fabricating materials, was successfully synthesized, and its self-assembled structure is described and discussed herein. Through this, it was found that the intermolecular interaction of long alkyl chains of 1 could be manipulated by thermal annealing to form a long-range straight ordered hierarchical lamellar structure with a periodicity of around 5 nm. Subsequent transmission electron microscopy (TEM) clearly identified polyhedral oligomeric silsesquioxane (POSS) molecules of 1 arranged in a highly ordered fashion, with a "head-to-head" type bilayered structure. The observation of a sublayer structure measuring approximately 0.4 nm in width was attributed to the highly regular packing of isobutyl groups in POSS molecules identified by TEM analysis. Moreover, the formation of a long-range straight structure with sharp interfacial boundaries, which is difficult to achieve with traditional diblock copolymers, is considered to be of significant importance to developing new practical applications of self-assembled nanostructures.
机译:针对新型自底向上型制造材料的烷基化笼型倍半硅氧烷(1)已成功合成,并在此描述和讨论了其自组装结构。通过此发现,可以通过热退火来操纵1个长烷基链的分子间相互作用,以形成周期为约5nm的长距离直序有序的层状结构。随后的透射电子显微镜(TEM)清楚地识别了以高度排列的方式排列的具有“头对头”型双层结构的多面体低聚倍半硅氧烷(POSS)分子1。观察到约0.4nm宽的亚层结构的观察结果归因于通过TEM分析鉴定的POSS分子中异丁基的高度规则堆积。而且,形成具有尖锐的界面边界的长距离的直链结构,这是传统的二嵌段共聚物难以实现的,被认为对于开发自组装纳米结构的新的实际应用具有重要的意义。

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