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Adsorption and Reaction of C2H4 and O-2 on a Nanosized Gold Cluster: A Computational Study

机译:纳米金簇上C2H4和O-2的吸附和反应:计算研究

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We have investigated the adsorption and reaction mechanisms of C2H4 and O-2 catalyzed by a Au38 nanoparticle based on periodic density-functional theory (DFT) calculations. The configurations of the adsorption of C2H4/Au-38, O-2/Au-38, and O/Au-38 as well as the coadsorption of C2H4O2/Au38 were predicted. The calculation results show that C2H4, O-2, and O are preferably bound at top (T), bridge (B), and hexagonal (h) sites with adsorption energies of -0.66, -0.99, and -3.93 eV, respectively. The detailed reaction mechanisms for ethylene epoxidation on the Au38 nanoparticle has been illustrated using the nudged elastic band (NEB) method. The oxidation process takes place via the LangmuirHinshelwood (LH) mechanism to generate ethylene oxide and acetaldehyde. The overall reaction of C2H4 + O-2 + Au-38 -> ethylene oxide + O/Au-38 is exothermic by 2.20-2.40 eV whereas those are 3.03-3.08 eV for the production of acetaldehyde and O/Au-38. The nature of the interaction between the adsorbate and gold nanocluster has been analyzed by the detailed electronic local density of states (LDOS) to understand the high catalytic activity of the gold nanoclusters.
机译:我们已经基于周期性密度泛函理论(DFT)计算研究了Au38纳米颗粒催化的C2H4和O-2的吸附和反应机理。预测了C2H4 / Au-38,O-2 / Au-38和O / Au-38的吸附构型以及C2H4O2 / Au38的共吸附。计算结果表明,C 2 H 4,O-2和O优选分别以-0.66,-0.99和-3.93eV的吸附能结合在顶部(T),桥(B)和六边形(h)上。已使用微动弹性带(NEB)方法阐明了Au38纳米颗粒上乙烯环氧化的详细反应机理。氧化过程通过LangmuirHinshelwood(LH)机理进行,生成环氧乙烷和乙醛。 C2H4 + O-2 + Au-38→环氧乙烷+ O / Au-38的总反应放热2.20-2.40 eV,而用于生产乙醛和O / Au-38的反应为3.03-3.08 eV。已通过详细的电子局部状态密度(LDOS)分析了被吸附物与金纳米团簇之间相互作用的性质,以了解金纳米团簇的高催化活性。

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