Majumder Chiranjib
Chemistry Division, Bhabha Atomic Research Center, Trombay, Mumbai, India.
Langmuir. 2008 Oct 7;24(19):10838-42. doi: 10.1021/la801439q. Epub 2008 Sep 6.
Using density functional theory formalism, we have investigated the adsorption behavior of thiols on the Pd(111) surface. Two different thiol molecules, viz. (a) methane thiol and (b) thiophene 2-thiol (TSH), were used as model adsorbates for this purpose. The results revealed that whereas the methane thiol molecule undergoes spontaneous dissociative chemisorption onto the palladium surface, the adsorption of the thiophene 2-thiol molecule does not involve cleavage of the S-H bond, leading to weak interaction energy or physisorption. The variation in the adsorption behavior has been explained based on the difference in the electronic environment of the terminal sulfur atom. The nature of binding at the interface has been analyzed through calculation of the partial density of states of the sulfur atom at the interface.
采用密度泛函理论形式,我们研究了硫醇在Pd(111)表面的吸附行为。为此,使用了两种不同的硫醇分子,即(a)甲硫醇和(b)噻吩-2-硫醇(TSH)作为模型吸附质。结果表明,甲硫醇分子在钯表面发生自发解离化学吸附,而噻吩-2-硫醇分子的吸附不涉及S-H键的断裂,导致相互作用能较弱或物理吸附。基于末端硫原子电子环境的差异解释了吸附行为的变化。通过计算界面处硫原子的局域态密度分析了界面处的结合性质。