Suppr超能文献

在选择性 CO 氧化条件下纳米 Au/γ-Al₂O₃负载催化剂上氧气吸附的动力学研究。

Kinetic study of oxygen adsorption over nanosized Au/γ-Al₂O₃ supported catalysts under selective CO oxidation conditions.

机构信息

Physical Chemistry Laboratory, Department of Chemistry, University of Patras, Patras 26504, Greece.

出版信息

Molecules. 2012 Apr 27;17(5):4878-95. doi: 10.3390/molecules17054878.

Abstract

O₂ adsorption is a key process for further understanding the mechanism of selective CO oxidation (SCO) on gold catalysts. Rate constants related to the elementary steps of O₂ adsorption, desorption and surface bonding, as well as the respective activation energies, over a nanosized Au/γ-Al₂O₃ catalyst, were determined by Reversed-Flow Inverse Gas Chromatography (RF-IGC). The present study, carried-out in a wide temperature range (50-300 °C), both in excess as well as in the absence of H₂, resulted in mechanistic insights and kinetic as well as energetic comparisons, on the sorption processes of SCO reactants. In the absence of H₂, the rate of O₂ binding, over Au/γ-Al₂O₃, drastically changes with rising temperature, indicating possible O₂ dissociation at elevated temperatures. H₂ facilitates stronger O₂ bonding at higher temperatures, while low temperature binding remains practically unaffected. The lower energy barriers observed, under H₂ rich conditions, can be correlated to O₂ dissociation after hydrogenation. Although, H₂ enhances both selective CO reactant's desorption, O₂ desorption is more favored than that of CO, in agreement with the well-known mild bonding of SCO reactant's at lower temperatures. The experimentally observed drastic change in the strength of CO and O₂ binding is consistent both with well-known high activity of SCO at ambient temperatures, as well as with the loss of selectivity at higher temperatures.

摘要

O₂吸附是进一步理解金催化剂上选择性 CO 氧化(SCO)机制的关键过程。通过反吹式气相色谱法(RF-IGC)测定了纳米 Au/γ-Al₂O₃催化剂上 O₂吸附、脱附和表面键合的各基元步骤的速率常数以及相应的活化能。本研究在较宽的温度范围内(50-300°C)进行,无论是在 H₂过量还是不存在 H₂的情况下,都对 SCO 反应物的吸附过程进行了机理分析、动力学和能量比较。在不存在 H₂的情况下,Au/γ-Al₂O₃上 O₂的结合速率随温度的升高而急剧变化,表明在较高温度下可能发生 O₂解离。H₂在较高温度下促进更强的 O₂键合,而低温键合几乎不受影响。在富 H₂条件下观察到的较低能垒可与加氢后 O₂解离相关联。尽管 H₂增强了选择性 CO 反应物的脱附,但 O₂的脱附比 CO 更有利,这与低温下 SCO 反应物的已知的较弱键合一致。实验观察到 CO 和 O₂结合强度的剧烈变化,这与 SCO 在环境温度下的高活性以及在较高温度下选择性的丧失一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6aef/6268671/a8663f6a843c/molecules-17-04878-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验