Shepherd Jeff L, Bizzotto Dan
Department of Chemistry, Advanced Materials and Process Engineering Laboratory (AMPEL), University of British Columbia, 2355 East Mall, Vancouver BC, Canada V6T 1Z4.
Langmuir. 2006 May 9;22(10):4869-76. doi: 10.1021/la052994i.
A single-crystal Au(111) electrode modified with an adsorbed layer of 1-octadecanol (C18OH) or oleyl alcohol (OLA) in pure or mixed composition was characterized using electrochemical and in situ fluorescence microscopy. Cyclic voltammetry and differential capacitance measurements revealed a repeatable, potential-induced adsorption/desorption process of the surfactant to/from the electrode surface while charge density and film pressure measurements indicated quasi-ideal mixing of the two adsorbed alcohols. A layer less defective than pure C18OH was created with incorporated OLA. Optical characterization was accomplished using epi-fluorescence microscopy combined with electrochemistry (electro-fluorescence microscopy) through the incorporation of two fluorescent probes into the adsorbed surfactant layer. Since molecular luminescence is quenched by a nearby metal, fluorescence was only observed when the fluorescent dye/alcohol layers were desorbed and therefore separated from the metal surface. When desorbed, the structure of the alcohol layers were similar in character, revealing aggregated features which did not change in morphology over numerous desorption/re-adsorption cycles. We have also used the electro-fluorescence technique to estimate the distance separating the metal and desorbed surfactant and believe that the molecules are displaced from the electrode surface by a distance not more than 40 nm.
采用电化学和原位荧光显微镜对用纯的或混合成分的1-十八醇(C18OH)或油醇(OLA)吸附层修饰的单晶Au(111)电极进行了表征。循环伏安法和微分电容测量揭示了表面活性剂在电极表面的吸附/解吸过程具有可重复性且受电位诱导,而电荷密度和膜压力测量表明两种吸附醇类呈现准理想混合状态。通过掺入OLA形成了比纯C18OH缺陷更少的一层。通过将两种荧光探针掺入吸附的表面活性剂层,利用落射荧光显微镜结合电化学(电荧光显微镜)完成了光学表征。由于分子发光会被附近的金属淬灭,所以只有当荧光染料/醇层解吸并因此与金属表面分离时才会观察到荧光。解吸时,醇层的结构在特征上相似,呈现出聚集特征,在多次解吸/再吸附循环中形态不变。我们还利用电荧光技术估算了金属与解吸表面活性剂之间的距离,并认为分子从电极表面位移的距离不超过40纳米。