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A DFT study of chlorine coverage over late transition metals and its implication on 1,2-dichloroethane hydrodechlorination

机译:DFT研究氯覆盖过渡金属和它的含义1、二氯乙烷hydrodechlorination

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摘要

Atomic chlorine is known to interact strongly with most late transition metal surfaces. This work aims to identify the relevant chlorine coverage under typical 1,2-dichloroethane hydrodechlorination conditions (T = 423-523 K, P-HCl = 10(-2)-10(1) bar) and its impact on the reaction energetics. Density functional theory calculations (GGA-PW91) were performed to study the adsorption of chlorine up to 1 monolayer over the close-packed facets of 10 late transition metals (Pt, Co, Ni, Cu, Ru, Rh, Pd, Ag, Ir, Au). The ab initio phase diagram of each chlorine/metal system was constructed. The phase diagrams predicted approximately 1/3 ML chlorine coverage on all metals other than Ag and Au, which remain clean surfaces under hydrodechlorination conditions. The presence of surface chlorine was also found to significantly destabilize the adsorption of reaction intermediates, thus shifting the reaction potential energy diagram upwards. Our results emphasize the importance of explicitly including adsorbed chlorine spectators in properly modeling the catalytic surfaces for the 1,2-dichloroethane hydrodechlorination reaction.
机译:氯原子是已知的与交互最晚过渡金属表面。旨在确定有关氯报道在典型的1,二氯乙烷hydrodechlorination条件(T = 423 - 523 K,P-HCl = 10(2) -10(1)条)和它的影响反应能量。计算(GGA-PW91)进行了研究1单层吸附的氯10晚的拥挤不堪的方面转变metals (silva、Co、Ni、Cu、得Rh,警部,通过"次工业革命的毒品).从头开始的相图氯/金属系统构造。图预测大约1/3毫升氯覆盖范围以外的所有金属Ag)和非盟,保持清洁的表面下hydrodechlorination条件。表面氯也明显发现破坏的吸附反应中间体,从而转移反应向上势能图。强调的重要性,明确包括吸附氯观众在正确建模1的催化表面,二氯乙烷hydrodechlorination反应。

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