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用于苯乙烯氧化反应的碳载体上原子精确银簇的活化

Activation of atomically precise silver clusters on carbon supports for styrene oxidation reactions.

作者信息

Sulaiman Kazeem O, Sudheeshkumar V, Scott Robert W J

机构信息

Department of Chemistry, University of Saskatchewan 110 Science Place Saskatoon Saskatchewan S7N 5C9 Canada

出版信息

RSC Adv. 2019 Sep 6;9(48):28019-28027. doi: 10.1039/c9ra05566e. eCollection 2019 Sep 3.

Abstract

Metal clusters have distinct features such as large surface area, low-coordination-atom enriched surfaces, and discrete energy levels that influence their behavior during catalytic reactions. Atomically-precise Ag clusters, which are analogues of more well-studied Au clusters, are yet to be fully explored as catalysts for various chemical reactions. 2,4-Dimethylbenzenethiol-protected Ag clusters were prepared and deposited onto carbon supports followed by calcination. Results from X-ray absorption fine structure (EXAFS) spectroscopy measurements and other characterization techniques indicated that thermal activation of carbon-supported Ag clusters resulted in dethiolation of Ag clusters at 250 °C and beyond, and consequently mild growth in particle sizes of Ag clusters on carbon supports was seen with increasing activation temperatures. Both as-prepared and activated Ag clusters were active for styrene oxidation reactions, with high selectivity towards styrene oxide, without using any promoter. Results show that mild activation at 250 °C yields the most active catalysts, and higher activation temperatures lead to decreased activities and slightly poorer selectivity to styrene oxidation as a result of cluster sintering. EXAFS data shows the resulting activated clusters are composed of Ag metal and that all thiols are removed from the Ag cluster surfaces, though XPS data shows that thiol oxidation products are still present in the sample.

摘要

金属簇具有独特的特征,如大表面积、低配位原子富集表面和离散能级,这些特征会影响它们在催化反应中的行为。原子精确的银簇是研究更充分的金簇的类似物,但作为各种化学反应的催化剂尚未得到充分探索。制备了2,4-二甲基苯硫醇保护的银簇并沉积在碳载体上,然后进行煅烧。X射线吸收精细结构(EXAFS)光谱测量和其他表征技术的结果表明,碳负载银簇的热活化导致银簇在250℃及以上脱硫醇,因此随着活化温度的升高,碳载体上银簇的粒径略有增大。制备态和活化态的银簇对苯乙烯氧化反应均具有活性,对环氧苯乙烯具有高选择性,且无需使用任何促进剂。结果表明,250℃的温和活化产生了最具活性的催化剂,而较高的活化温度由于簇烧结导致活性降低且对苯乙烯氧化的选择性略差。EXAFS数据表明,所得活化簇由银金属组成,且所有硫醇均从银簇表面去除,尽管XPS数据表明硫醇氧化产物仍存在于样品中。

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