首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >The influence of MoS2 slab 2D morphology and edge state on the properties of alumina-supported molybdenum sulfide catalysts
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The influence of MoS2 slab 2D morphology and edge state on the properties of alumina-supported molybdenum sulfide catalysts

机译:MoS2平板二维形态和边缘态对氧化铝负载硫化钼催化剂性能的影响

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摘要

To study the influence of MoS2 particles morphology on their catalytic properties, a series of MoS2/Al2O3 catalysts was prepared, by means of treatment of oxide precursor under variable conditions. The conditions of treatment were selected to generate the MoS2 crystallites exposing preferentially M-edges or M- and S-edges, as predicted by the theory phase diagrams. The MoS2 particles size was estimated by electron microscopy and the degree of sulfidation to MoS2 was determined from X-ray photoelectron spectroscopy. The edge state of MoS2 particles was probed by FT-1R of adsorbed CO and by temperature programmed reduction (TPR). Hydrogenation (HYD) selectivity and hydrodesulfurization (HDS) selectivity were estimated from the catalytic tests using hydroconversion of 2,3-dimethylbut-2-ene and 3-methyIthiophehe. It seems that the variations of 2D morphology of MoS2 particles influence the HYD/HDS selectivity. However, a drastic drop of activity was observed when the preparation temperature increased from 250 to 700 °C which cannot be accounted by the decrease of the amount of exposed edges due to thermal sintering. At the same time a drastic loss of ability to adsorb CO and harder reducibility of sulfide edges were observed for the samples prepared at high temperatures. The results suggest that well crystallized edges of MoS2 bearing no excess sulfur have low activity whatever their symmetry type.
机译:为了研究MoS2颗粒形态对其催化性能的影响,通过在可变条件下处理氧化物前驱体,制备了一系列MoS2 / Al2O3催化剂。如理论相图所预测,选择处理条件以产生优先暴露M边缘或M边缘和S边缘的MoS2晶体。通过电子显微镜估计MoS 2的颗粒大小,并通过X射线光电子能谱确定硫化成MoS 2的程度。 MoS2颗粒的边缘状态通过吸附的CO的FT-1R和程序升温还原(TPR)进行探测。氢化(HYD)选择性和加氢脱硫(HDS)选择性是通过催化测试使用2,3-二甲基丁-2-烯和3-甲基噻吩的加氢转化率估算的。似乎MoS2颗粒的2D形态变化会影响HYD / HDS选择性。然而,当制备温度从250℃升高到700℃时,观察到活性急剧下降,这不能归因于由于热烧结引起的暴露边缘量的减少。同时,对于在高温下制备的样品,观察到CO吸附能力的急剧降低和硫化物边缘的更难还原性。结果表明,无论对称类型如何,不含过量硫的MoS2结晶边缘均具有较低的活性。

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