Enever M, Linic S, Uffalussy K, Vohs J M, Barteau M A
Center for Catalytic Science and Technology, Department of Chemical Engineering, University of Delaware, Newark, Delaware 19716, USA.
J Phys Chem B. 2005 Feb 17;109(6):2227-33. doi: 10.1021/jp048939k.
Styrene oxide undergoes an activated ring opening on Ag(111) at temperatures above 200 K. The product of this reaction is a stable oxametallacycle intermediate. The structure of this species has been obtained by density functional theory calculations and the computed vibrational spectrum is consistent with the experimental spectrum obtained using high-resolution electron energy loss spectroscopy. The oxametallacycle formed by ring-opening styrene oxide is structurally analogous to that previously observed for ring opening of epoxybutene on Ag(110) and represents the largest member of this adsorbate structure class yet isolated. In both cases, the epoxide ring opens at the carbon bearing the pendant unsaturated group, and the pendant group (phenyl in styrene oxide) is oriented nearly parallel to the surface plane. The oxametallacycle formed from styrene oxide reacts at 485 K to regenerate styrene oxide plus small amounts of phenylacetaldehyde. This peak temperature is similar to that previously reported for generation of styrene oxide from adsorbed styrene and oxygen atoms on Ag(111), suggesting that the epoxidation proceeds via the oxametallacycle intermediate isolated in the present work.
氧化苯乙烯在温度高于200 K时于Ag(111)表面发生活化开环反应。该反应的产物是一种稳定的氧金属环中间体。通过密度泛函理论计算得到了该物种的结构,其计算得到的振动光谱与使用高分辨率电子能量损失光谱获得的实验光谱一致。由氧化苯乙烯开环形成的氧金属环在结构上类似于先前在Ag(110)上观察到的环氧丁烯开环产物,并且是迄今分离出的该吸附质结构类别的最大成员。在这两种情况下,环氧环均在带有侧链不饱和基团的碳原子处开环,且侧链基团(氧化苯乙烯中的苯基)几乎与表面平面平行排列。由氧化苯乙烯形成的氧金属环在485 K时发生反应,再生出氧化苯乙烯和少量苯乙醛。该峰值温度与先前报道的在Ag(111)上由吸附的苯乙烯和氧原子生成氧化苯乙烯的温度相似,这表明环氧化反应是通过本研究中分离出的氧金属环中间体进行的。