首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Patterned Organosilane Monolayers as Lyophobic-Lyophilic Guiding Templates in Surface Self-Assembly: Monolayer Self-Assembly versus Wetting-Driven Self-Assembly
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Patterned Organosilane Monolayers as Lyophobic-Lyophilic Guiding Templates in Surface Self-Assembly: Monolayer Self-Assembly versus Wetting-Driven Self-Assembly

机译:图案化有机硅烷单层作为表面自组装中的疏液亲液指导模板:单层自组装与湿润驱动自组装

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Monolayer self-assembly (MSA) was discovered owing to the spectacular liquid repellency (lyophobicity) characteristic of typical self-assembling monolayers of long tail amphiphiles, which facilitates it straightforward visualization of the MSA process without the need of any sophisticated analytical equipment. It is this remarkable property that allows precise control of the self-assembly of discrete, well-defined monolayers, and it was the alternation of lyophobicity and lyophilicity (liquid affinity) in it system of monolayer-forming bifunctional organosilanes that allowed the extension of the principle of MSA to the layer-by-layer self-assembly of planed multilayers. On this basis, the possibility of generating at will patterned monolayer surfaces with lyophobic and lyophilic regions paves the way to the engineering of molecular templates for site-defined deposition of materials oil a surface via either precise MSA or wetting-driven self-assembly (WDSA), namely, the selective retention of a liquid repelled by the lyophobic regions of the pattern on its lyophilic Sites. Highly ordered organosilane monolayer and thicker layer-by-layer assembled structures are shown to be ideally suited for this purpose. Examples are given of novel WDSA and MSA processes, such as guided deposition by WDSA on lyophobic-lyophilic monolayer and bilayer template patterns at elevated temperatures, from melts and solutions that solidify upon cooling to the ambient temperature, and the possible extension of constructive nanolithography to thicker layer-by-layer assembled films, which paves the way to three-dimensional (3D) template patterns made of readily available monofunctional n-alkyl silanes only. It is further shown how WDSA may contribute to MSA on nanoscale template features as well as how combined MSA and WDSA modes of surface assembly may lead to composite surface architectures exhibiting rather surprising new properties. Finally, a critical evaluation is offered of the scope, advantages, and limitations of MSA and WDSA in the bottom-Up fabrication of surface structures on variable length scales from nano to macro.
机译:发现单层自组装(MSA)是由于典型的长尾两亲性自组装单层具有惊人的拒液性(疏液性),这使其无需任何复杂的分析设备即可直观地直观显示MSA过程。正是这一非凡的特性使得可以精确控制离散的,定义明确的单分子层的自组装,而正是在单分子形成双官能有机硅烷的体系中,疏液性和亲液性(液体亲和性)交替发生,从而使得MSA原理可以使平面多层结构逐层自组装。在此基础上,可以随意生成带有疏液区和亲液区的带图案的单层表面的可能性,为分子模板的工程化铺平了道路,以通过精确的MSA或润湿驱动的自组装(WDSA)在表面上定点沉积材料),也就是在图案的亲液位点上,被图案的疏液区域排斥的液体的选择性保留。高度有序的有机硅烷单层和较厚的逐层组装结构显示非常适合此目的。给出了新颖的WDSA和MSA工艺的示例,例如WDSA在高温下在疏液-亲液单层和双层模板图案上引导沉积,包括从冷却至环境温度时固化的熔体和溶液,以及可能将构造纳米光刻技术扩展到厚的逐层组装膜,这为仅由易于获得的单官能正烷基硅烷制成的三维(3D)模板图案铺平了道路。进一步显示了WDSA如何在纳米级模板特征上对MSA做出贡献,以及MSA和WDSA组合的表面组装模式如何导致复合表面结构展现出令人惊讶的新特性。最后,在从纳米到宏观的可变长度规模的表面结构的自下而上制造中,对MSA和WDSA的范围,优势和局限性进行了严格的评估。

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