首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Self-assembled monolayers of alkanethiolates on thin gold films as substrates for surface force measurements. Long-range hydrophobic interactions and electrostatic double-layer interactions
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Self-assembled monolayers of alkanethiolates on thin gold films as substrates for surface force measurements. Long-range hydrophobic interactions and electrostatic double-layer interactions

机译:硫链烷酸酯的自组装单层在金薄膜上作为表面力测量的基底。远程疏水相互作用和静电双层相互作用

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摘要

Surfaces prepared by self-assembly of alkanethiolates onto thin (10 nm) gold films supported on glass have been used as substrates for surface force measurements between macroscopic surfaces. Surface roughness, the order in the monomolecular film, wetting properties, and their stability in aqueous electrolyte solutions have been investigated using atomic force microscopy, infrared absorption spectroscopy, and contact angle measurements. Direct force measurements have been performed with a noninterferometric bimorph surface force apparatus, using surfaces with differently functionalized thiolates; measurements were made in air, water, and aqueous electrolyte solutions. Results from force measurements between hydrophobic and neutral hydrophilic surfaces in air and water are presented and discussed, as well as some results from measurements with surfaces exposing carboxylic groups in various aqueous electrolyte solutions. It is demonstrated that alkanethiol monolayers self-assembled onto thin gold films on macroscopic surfaces are well-suited as substrates for direct measurements of long-range surface forces. The utility of these surfaces as substrates for investigations of short-range phenomena is limited until the effect of the roughness on the adhesion between the surfaces has been properly quantified and the contribution of the van der Waals force to the total interaction has been calculated. The latter is difficult to assess due to the large number of layers in the system and the presence of conducting surfaces. [References: 82]
机译:通过链烷硫醇盐自组装到支撑在玻璃上的薄(10 nm)金膜上而制备的表面已用作宏观表面之间表面力测量的基材。使用原子力显微镜,红外吸收光谱和接触角测量研究了表面粗糙度,单分子膜的顺序,润湿性能及其在电解质水溶液中的稳定性。使用具有不同官能化硫醇盐的表面,已经使用非干涉双压电晶片表面力设备进行了直接力测量;在空气,水和电解质水溶液中进行测量。给出并讨论了在空气和水中的疏水性和中性亲水性表面之间的力测量结果,以及在各种电解质水溶液中暴露羧基的表面的测量结果。结果表明,自组装在宏观表面金薄膜上的烷硫醇单分子膜非常适合作为直接测量远距离表面力的基质。这些表面用作研究短程现象的基材的用途受到限制,直到已正确量化了粗糙度对表面之间的附着力的影响,并计算了范德华力对总相互作用的贡献。由于系统中的层数众多且存在导电表面,因此难以评估后者。 [参考:82]

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