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Analysis and characterization of mixed alkyl silane self-assembled monolayers on metal and oxide surfaces

机译:混合烷基硅烷自组装单层对金属和氧化物表面的分析与表征

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Alkyl silane amphiphiles form robust Self-Assembled Monolayers (SAMs) on stable oxide surfaces. Substrate surfaces of Ge, Si, and Ti can be modified by coating them with ultra-thin long-chain alkyl silane monolayers which are found to be very stable. Titanium is especially interesting as it is a light, corrosion- resistant metal used in aircraft, spacecraft, and medical devices. In this study, mixed monolayers, composed of very similar alkyl silanes, differing only in chain length by about 5 angstroms (A), were formed on silicon wafer substrates. Although the desired and expected result was random mixing of the monomers in the SAM, island aggregates of the longer monomer were observed with Atomic Force Microscopy (AFM). Since self-assembly of silanes on oxide is believed to be attained through strong covalent Si-O bonding at the substrate surface, inter-molecular thermodynamic forces between like molecules, or incomplete mixing of monomers may give rise to island formation.
机译:烷基硅烷两亲物在稳定的氧化物表面上形成稳健的自组装单层(SAMS)。 GE,Si和Ti的底物表面可以通过用超薄的长链烷基硅烷单层涂覆它们来改性,所述超薄的长链烷基硅烷单层非常稳定。钛特别有趣,因为它是飞机,航天器和医疗设备中使用的光,耐腐蚀金属。在该研究中,在硅晶片基板上形成由非常相似的烷基硅烷组成的混合单层,仅在链长的链长的乘以约5埃(A)中。尽管所需的和预期的结果是SAM中单体的随机混合,但用原子力显微镜(AFM)观察较长单体的岛聚集体。由于据信氧化硅上的硅烷的自组装通过底物表面上的强烈的共价Si-O键合来实现,因此像素之间的分子间热力学力或单体不完全混合可能导致岛状形成。

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