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Self-assembled monolayers from symmetrical di-thiols: Preparation, characterization and application for the assembly of electrochemically active films

机译:来自对称二硫醇的自组装单层:用于组装电化学活性膜的制备,表征和应用

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摘要

1,3-dimercaptopropan-2-ol, a symmetrical di-thiol, has been synthesized and applied as a new type of anchor molecule to prepare a self-assembled monolayer (SAM) on the gold surface. The formed monolayers were studied by cyclic voltammetry, impedance spectroscopy, X-ray photoelectron spectroscopy, kinetic capacitance, and contact angle measurements. The SAM structure depends on the adsorption conditions. A short incubation time of the electrode at high concentration of this dithiol leads to the predominating binding through one thiol group of the adsorbate to the gold surface, while a long incubation at low concentration leads to the predominating binding by both thiol groups. A comparative study of the desorption and replacement of SAMs indicates a strong stability increase when the SAM molecules bond gold surface by two bonds mainly. This monolayer was used to immobilize electrochemically active p-benzoquinone moiety. The surface concentration of p-benzoquinone obtained from cyclic voltammetry is 2.5 +/- 0.2 x 10(-10) mol.cm(-2) which corresponds to the functionalization of 65 +/- 5% of SAM molecules. The obtained highly stable SAM with redox-active terminal group can be applied for different tasks of chemical sensing and biosensing. As an example, an application of this system for electrocatalytical oxidation of dihydronicotinamide adenosine dinucleotide (NADH) was tested.
机译:1,3-二维巯基丙烷-2-醇,对称二硫醇已合成并施加为新型锚定分子,以制备金表面上的自组装单层(SAM)。通过循环伏安法,阻抗光谱,X射线光电子谱,动能电容和接触角测量来研究形成的单层。 SAM结构取决于吸附条件。电极在高浓度的该二硫醇的短暂孵育时间导致通过吸附物的一个硫醇基团与金表面的致密结合,而低浓度的长孵育导致硫醇基团的占优势结合。对SAM的解吸和更换的比较研究表明,当SAM分子键合金表面的两个键时,稳定性增加。该单层用于固定电化学活性的对苯醌部分。从环伏安法获得的对苯醌的表面浓度为2.5 +/- 0.2×10(-10)摩尔.CM(-2),其对应于SAM分子的65 +/- 5%的官能化。通过氧化还原活性末端组获得的高稳定的SAM可以应用于化学传感和生物传感的不同任务。作为一个例子,测试了该系统用于二氢辛酰胺胺胺胺胺氨酸二核苷酸(NADH)的电催化氧化。

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  • 来源
    《Applied Surface Science》 |2020年第may30期|145827.1-145827.8|共8页
  • 作者单位

    Univ Tunis El Manar Fac Sci Tunis Chem Dept Lab Analyt Chem & Elect LR99ES15 Campus Univ Tunis El Manar Tunis El Manar 2092 Tunisia|Brandenburg Tech Univ Cottbus Senftenberg Inst Biotechnol Dept Nanobiotechnol D-01968 Senftenberg Germany;

    Brandenburg Univ Technol Cottbus Senftenberg Appl Phys & Semicond Spect Konrad Zuse Str 1 D-03046 Cottbus Germany;

    Brandenburg Univ Technol Cottbus Senftenberg Appl Phys & Semicond Spect Konrad Zuse Str 1 D-03046 Cottbus Germany;

    Univ Tunis El Manar Fac Sci Tunis Chem Dept Lab Analyt Chem & Elect LR99ES15 Campus Univ Tunis El Manar Tunis El Manar 2092 Tunisia;

    Brandenburg Tech Univ Cottbus Senftenberg Inst Biotechnol Dept Nanobiotechnol D-01968 Senftenberg Germany;

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