Quantitative evaluation of perfluorinated alkanethiol molecular order on gold surfaces.

IF 1.6 4区 医学 Q4 BIOPHYSICS Biointerphases Pub Date : 2023-05-01 DOI:10.1116/6.0002720
Lara J Gamble, David Radford, David W Grainger, David G Castner
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Abstract

Self-assembled monolayers (SAMs) of perfluoroalkanethiols [CF3(CF2)xCH2CH2SH (x = 3, 5, 7, and 9)] on gold were characterized by x-ray photoelectron spectroscopy (XPS), near edge x-ray absorption fine structure (NEXAFS), and static time-of-flight secondary ion mass spectrometry (ToF-SIMS). Perfluoroalkanethiols of several chain lengths were synthesized using a known hydride reduction method for transforming commercially available perfluoroalkyliodides to corresponding perfluoroalkanethiols. This strategy provides improved product yields compared to other known routes based on hydrolysis from the common thioacetyl perfluoroalkyl intermediate. Angle-dependent XPS analysis revealed that CF3(CF2)xCH2CH2SH (x = 5, 7, and 9; F6, F8, and F10, respectively) SAMs on gold exhibited significant enrichment of the terminal CF3 group at the outer monolayer surface with the sulfur present as a metal-bound thiolate located at the monolayer-gold interface. XPS of the CF3(CF2)3CH2CH2SH (F4) monolayer revealed a thin film with a significant (>50%) amount of hydrocarbon contamination consistent with poorly organized monolayers, while the longest thiol (F10) showed XPS signals attributed to substantial ordering and anisotropy. ToF-SIMS spectra from all four SAMs contained molecular ions representative of the particular perfluorinated thiol used to prepare the monolayer. NEXAFS methods were used to determine degrees of ordering and average tilt for molecules comprising monolayers. The SAMs prepared from the longest (F10) thiols exhibited the highest degree of ordering with the molecular axis nearly perpendicular to the gold surface. The degree of ordering decreased significantly with decreasing length of the perfluorocarbon tail.

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金表面全氟烷硫醇分子秩序的定量评估。
通过 X 射线光电子能谱 (XPS)、近边缘 X 射线吸收精细结构 (NEXAFS) 和静态飞行时间二次离子质谱 (ToF-SIMS) 对金上的全氟烷硫醇 [CF3(CF2)xCH2CH2SH (x = 3、5、7 和 9)] 自组装单层 (SAM) 进行了表征。利用已知的氢化物还原法将市售的全氟烷基碘化物转化为相应的全氟烷硫醇,合成了多种链长的全氟烷硫醇。与其他基于常见硫代乙酰基全氟烷基中间体水解的已知方法相比,该方法提高了产品收率。角度依赖性 XPS 分析表明,金上的 CF3(CF2)xCH2CH2SH(x = 5、7 和 9;分别为 F6、F8 和 F10)SAM 在单层外表面表现出末端 CF3 基团的显著富集,而硫则以金属结合硫醇的形式存在于单层-金界面。单层 CF3(CF2)3CH2CH2SH (F4) 的 XPS 显示,薄膜上有大量(大于 50%)的碳氢化合物污染,这与单层组织不良的情况一致,而最长的硫醇 (F10) 显示的 XPS 信号归因于大量的有序性和各向异性。所有四种 SAM 的 ToF-SIMS 光谱都含有代表用于制备单层的特定全氟硫醇的分子离子。NEXAFS 方法用于确定单层分子的有序度和平均倾斜度。由最长(F10)硫醇制备的 SAM 具有最高的有序度,分子轴几乎垂直于金表面。有序度随着全氟碳化物尾部长度的减少而显著降低。
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来源期刊
Biointerphases
Biointerphases 生物-材料科学:生物材料
自引率
0.00%
发文量
35
期刊介绍: Biointerphases emphasizes quantitative characterization of biomaterials and biological interfaces. As an interdisciplinary journal, a strong foundation of chemistry, physics, biology, engineering, theory, and/or modelling is incorporated into originated articles, reviews, and opinionated essays. In addition to regular submissions, the journal regularly features In Focus sections, targeted on specific topics and edited by experts in the field. Biointerphases is an international journal with excellence in scientific peer-review. Biointerphases is indexed in PubMed and the Science Citation Index (Clarivate Analytics). Accepted papers appear online immediately after proof processing and are uploaded to key citation sources daily. The journal is based on a mixed subscription and open-access model: Typically, authors can publish without any page charges but if the authors wish to publish open access, they can do so for a modest fee. Topics include: bio-surface modification nano-bio interface protein-surface interactions cell-surface interactions in vivo and in vitro systems biofilms / biofouling biosensors / biodiagnostics bio on a chip coatings interface spectroscopy biotribology / biorheology molecular recognition ambient diagnostic methods interface modelling adhesion phenomena.
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