首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Direct Chemical Mapping of Electrochemically Generated Spatial Composition Gradients on Thin GolD Films with Surface-Enhanced Raman Spectroscopy
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Direct Chemical Mapping of Electrochemically Generated Spatial Composition Gradients on Thin GolD Films with Surface-Enhanced Raman Spectroscopy

机译:表面增强拉曼光谱法在GolD薄膜上电化学生成的空间组成梯度的直接化学作图

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Surface-enhanced Raman spectroscopy (SERS) was employed to map the composition of electrochemically generated gradients in aromatic thiols on Au electrodes. Two commonly used substrates, electrochemically roughened (ORC) and metal film over nanosphere (MFON) electrodes, were tested for this purpose. Only the MFON substrates displayed the requisite electrical continuity and signal-enhancement properties needed for vibrational spectroscopic mapping of electrochemical gradients. One-component gradients and counterpropagating two-component gradients were formed from naphthalenethiol (NPT), chlorobenzenemethanethiol (ClBMT) and acetamidothiophenol (ACT) and were characterized by Raman scattering on Au MFON substrates. The surface coverage observed approximated the coverage predicted by the combination of a linear potential gradient with local Nernstian behavior of the reductive desorption reaction. For two-component gradients of NPT/ClBMT and NPT/ACT it was possible to perform measurements of surface composition as a function of spatial position (potential), thereby achieving chemical mapping of the surface with the spatial resolution of the focused laser. Because the desorption kinetics for aromatic thiols are relatively slow, surface coverages could also be controlled by changing the length of time the electrochemical potential gradient was applied.
机译:使用表面增强拉曼光谱(SERS)来绘制Au电极上芳族硫醇中电化学生成的梯度的组成图。为此,测试了两种常用的基材,电化学粗糙化(ORC)和纳米球上的金属膜(MFON)电极。仅MFON基板显示出电化学梯度的振动光谱映射所需的必要的电连续性和信号增强特性。由萘硫醇(NPT),氯苯甲硫醇(ClBMT)和乙酰氨基苯硫酚(ACT)形成一组分梯度和反向传播的二组分梯度,并通过在Au MFON基底上的拉曼散射进行表征。观察到的表面覆盖率近似于通过线性电势梯度与还原性解吸反应的局部能斯特行为的组合所预测的覆盖率。对于NPT / ClBMT和NPT / ACT的两组分梯度,可以根据空间位置(电势)进行表面成分的测量,从而以聚焦激光的空间分辨率实现表面的化学绘图。由于芳族硫醇的解吸动力学相对较慢,因此还可以通过改变施加电化学势梯度的时间长度来控制表面覆盖率。

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