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IR Spectroscopic Evidence for MoS2 Morphology Change with Sulfidation Temperature on MoS2/Al2O3 Catalyst

机译:MoS2 / Al2O3催化剂上硫化温度引起的MoS2形态变化的红外光谱证据

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摘要

Low temperature CO adsorption followed by IR spectroscopy (IR/CO) characterization was used to depict the MoS2 morphology change with sulfidation temperature on MoS2/Al2O3 catalyst. It is found that the morphology of MoS2 slabs on MoS2/Al2O3 catalyst under typical sulfidation temperature range (573 to 723 K) is a truncated triangle exposing both the M-edge and S-edge. Moreover, the IR/CO data indicate that the truncation degree (ratio of S-edge/M-edge) of MoS2 slabs gradually increases with increasing sulfidation temperature. This finding is in line with density functional theory calculation on model catalysts, providing IR evidence of MoS2 morphology change with sulfidation temperature on an Al2O3-supported catalyst. As a further step, it is also found that the MoS2 morphology is strongly influenced by MoS2-Al2O3 interactions under the same sulfidation temperature.
机译:低温CO吸附然后进行红外光谱(IR / CO)表征来描述MoS2 / Al2O3催化剂上硫化温度下MoS2的形态变化。结果表明,在典型的硫化温度范围(573-723 K)下,MoS2 / Al2O3催化剂上的MoS2平板的形态为截短的三角形,同时暴露了M边缘和S边缘。此外,IR / CO数据表明,随着硫化温度的升高,MoS2平板的截断度(S边缘/ M边缘之比)逐渐增加。这一发现与模型催化剂的密度泛函理论计算相符,为在Al2O3负载的催化剂上硫化温度下MoS2形态变化提供了IR证据。作为进一步的步骤,还发现在相同的硫化温度下,MoS2的形态受到MoS2-Al2O3相互作用的强烈影响。

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