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首页> 外文期刊>Japanese Journal of Applied Physics. Part 1, Regular Papers, Brief Communications & Review Papers >Scanning Tunneling Microscopy Observations of Proton and Metal Cation Catching Behavior of Embedded Bipyridine Thiols in Alkanethiol Self-Assembled Monolayers on Au(111)
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Scanning Tunneling Microscopy Observations of Proton and Metal Cation Catching Behavior of Embedded Bipyridine Thiols in Alkanethiol Self-Assembled Monolayers on Au(111)

机译:Au(111)上烷硫醇自组装单层中嵌入联吡啶硫醇的质子和金属阳离子捕捉行为的扫描隧道显微镜观察

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摘要

We studied the ion catching behavior of nanoscale molecular domains of bipyridine thiol embedded in alkanethiol self-assembled monolayers (SAMs) on Au(111) by scanning tunneling microscopy (STM) to construct and demonstrate the possibility of a molecular sensor. We used a bromine-terminated bipyridine thiol molecule, in which a bipyridine unit is connected to a conjugated phenylene-ethynylene system, and then successfully observed the protonation response of the bipyridine molecule. When the Au substrate was immersed into dilute CF_3SO_3H solution, the apparent height of bipyridine spots became lower after this treatment. On the other hand, when the substrate was immersed into 0.1 mM Pd complex solution, the apparent height of bipyridine spots became higher than that in the initial state. These findings demonstrate the possibility of constructing cation sensor using several molecular domains, and the different ion catching behaviors of bipyridine molecules may lead to the development of highly selective molecular sensors.
机译:我们通过扫描隧道显微镜(STM)研究了埋在Au(111)上的烷硫醇自组装单分子膜(SAMs)中的联吡啶硫醇的纳米级分子域的离子捕获行为,以构建和证明分子传感器的可能性。我们使用了一个溴末端的联吡啶硫醇分子,其中联吡啶单元连接到共轭亚苯基-乙炔基系统,然后成功地观察到联吡啶分子的质子化反应。将Au基板浸入CF_3SO_3H稀溶液中后,联吡啶斑点的表观高度变低。另一方面,当将基板浸入0.1mM的Pd复合溶液中时,联吡啶斑点的表观高度变得高于初始状态。这些发现证明了使用几个分子结构域构建阳离子传感器的可能性,并且联吡啶分子的不同离子捕获行为可能导致高选择性分子传感器的发展。

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