首页> 外文OA文献 >C–H activation and metalation at electrode surfaces: 2,3-dimethyl-1,4-dihydroxybenzene on Pd(pc) and Pd(111) studied by TLE, HREELS and DFT
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C–H activation and metalation at electrode surfaces: 2,3-dimethyl-1,4-dihydroxybenzene on Pd(pc) and Pd(111) studied by TLE, HREELS and DFT

机译:电极表面的CH活化和金属化:Pd(pc)和Pd(111)上的2,3-二甲基-1,4-二羟基苯由TLE,HREELS和DFT研究

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摘要

Previous studies, based on thin-layer electrochemistry (TLE), in situ scanning tunneling microscopy (EC-STM), high-resolution electron energy loss spectroscopy (HREELS) and density functional theory (DFT) computations, on the chemical adsorption of hydroquinone from aqueous solutions onto atomically smooth Pd (and Pt) electrode surfaces indicated two modes of attachment that depended upon the solution concentration. At low activities, the diphenol was oxidatively chemisorbed as benzoquinone in a flat orientation, suggestive of a Pd(2,3,5,6-η-C_6H_4O_2) surface complex; at higher concentrations, vertical chemisorption was effected via two C–H bond activations (or metalations) at the 2 and 3 ring positions, evocative of an o-phenylene organopalladium compound. We have extended the work to 2,3-dimethyl-1,4-dihydroxybenzene on Pd(pc) and Pd(111) electrodes to probe the effect of two methyl substituents on only one side of the diphenol ring. Surface coverage and adsorbed-molecule cross section data from TLE and HREELS measurements revealed non-random concentration-dependent adsorbate orientations similar to the oxidative chemisorption of hydroquinone: flat at low concentrations and edgewise at elevated concentrations. The DFT results suggested that, for the flat structure, surface coordination is via the two double bonds of the quinone ring as in [Pd(2,3,5,6-η)-2,3-dimethyl-p-quinone]. For the edge-vertical orientation, a structure analogous to an o-phenylene compound is generated in which C–H bonds at the 5 and 6 ring positions are activated and then metalated. DFT-simulated HREELS spectra helped identify the observed peaks that distinguish the surface-coordinated quinone from the surface-metalated diphenol.
机译:以前的研究基于薄层电化学(TLE),原位扫描隧道显微镜(EC-STM),高分辨率电子能量损失谱(HREELS)和密度泛函理论(DFT)计算,研究了对苯二酚的化学吸附水溶液在原子上光滑的Pd(和Pt)电极表面上显示出两种附着模式,这取决于溶液浓度。在低活性下,二苯酚被氧化化学吸附为苯醌,呈平面取向,表明存在Pd(2,3,5,6-η-C_6H_4O_2)表面配合物;在较高浓度下,垂直化学吸附是通过2和3个环位置的两个C–H键活化(或金属化)来实现的,唤起了邻亚苯基有机钯化合物的产生。我们已经将工作扩展到Pd(pc)和Pd(111)电极上的2,3-二甲基-1,4-二羟基苯,以探测仅在二酚环一侧的两个甲基取代基的作用。来自TLE和HREELS测量的表面覆盖率和吸附分子的横截面数据显示出与氢醌的氧化化学吸附相似的非随机浓度依赖性吸附物方向:低浓度时呈平直状态,高浓度时沿边缘呈水平方向。 DFT结果表明,对于扁平结构,表面配位是通过[Pd(2,3,5,6-η)-2,3-二甲基-对醌]中的醌环的两个双键实现的。对于边缘-垂直方向,会生成类似于邻亚苯基化合物的结构,其中5和6个环位置的C–H键被激活,然后被金属化。 DFT模拟的HREELS光谱有助于识别观察到的峰,这些峰将表面配位的醌与表面金属化的二酚区分开来。

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