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新型二烷基二硫代磷酸自组装单分子膜(SAMs):金基底形貌对吸附物结合和 SAM 结构的影响。

New dialkyldithiophosphinic acid self-assembled monolayers (SAMs): influence of gold substrate morphology on adsorbate binding and SAM structure.

机构信息

Department of Chemistry and Biochemistry, University of Windsor, Windsor, Ontario, Canada, N9B 3P4.

出版信息

Langmuir. 2011 Aug 16;27(16):10019-26. doi: 10.1021/la202007q. Epub 2011 Jul 21.

Abstract

We report the fabrication and characterization of new self-assembled monolayers (SAMs) formed from dihexadecyldithiophosphinic acid [(C(16))(2)DTPA] molecules on gold substrates. In these SAMs, the ability of the (C(16))(2)DTPA headgroup to chelate to the gold surface depends on the morphology of the gold substrate. Gold substrates fabricated by electron-beam evaporation (As-Dep gold) consist of ∼50-nm grains separated by deep grain boundaries (∼10 nm). These grain boundaries inhibit the chelation of (C(16))(2)DTPA adsorbates to the surface, producing SAMs in which there is a mixture of monodentate and bidentate adsorbates. In contrast, gold substrates produced by template stripping (TS gold) consist of larger grains (∼200-500 nm) with shallower grain boundaries (<2 nm). On these substrates, the low density of shallow grain boundaries allows (C(16))(2)DTPA molecules to chelate to the surface, producing SAMs in which all molecules are bidentate. The content of bidentate adsorbates in (C(16))(2)DTPA SAMs formed on As-Dep and TS gold substrates strongly affects the SAM properties: Alkyl chain organization, wettability, frictional response, barrier properties, thickness, and thermal stability all depend on whether a SAM has been formed on As-Dep or TS gold. This study demonstrates that substrate morphology has an important influence on the structure of SAMs formed from these chelating adsorbates.

摘要

我们报告了新的自组装单层(SAMs)的制造和表征,这些 SAMs 由二己基二硫代膦酸[(C(16))(2)DTPA]分子在金基底上形成。在这些 SAMs 中,(C(16))(2)DTPA 头基螯合到金表面的能力取决于金基底的形态。通过电子束蒸发(As-Dep 金)制造的金基底由约 50nm 晶粒组成,晶粒之间由深晶界(10nm)隔开。这些晶界抑制了(C(16))(2)DTPA 吸附物的螯合,导致 SAMs 中存在单齿和双齿吸附物的混合物。相比之下,通过模板剥离(TS 金)制造的金基底由较大的晶粒(200-500nm)组成,晶界较浅(<2nm)。在这些基底上,浅晶界的低密度允许(C(16))(2)DTPA 分子螯合到表面,导致 SAMs 中所有分子都是双齿的。在 As-Dep 和 TS 金基底上形成的(C(16))(2)DTPA SAMs 中的双齿吸附物含量强烈影响 SAM 性质:烷基链组织、润湿性、摩擦响应、阻隔性能、厚度和热稳定性都取决于 SAM 是否在 As-Dep 或 TS 金上形成。本研究表明,基底形态对这些螯合吸附物形成的 SAM 结构有重要影响。

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