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The Ti3AlC2 MAX Phase as an Efficient Catalyst for Oxidative Dehydrogenation of n‐Butane

机译:Ti3AlC2 MAX相可作为正丁烷氧化脱氢的有效催化剂

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摘要

Dehydrogenation or oxidative dehydrogenation (ODH) of alkanes to produce alkenes directly from natural gas/shale gas is gaining in importance. Ti3AlC2, a MAX phase, which hitherto had not been used in catalysis, efficiently catalyzes the ODH of n‐butane to butenes and butadiene, which are important intermediates for the synthesis of polymers and other compounds. The catalyst, which combines both metallic and ceramic properties, is stable for at least 30 h on stream, even at low O2:butane ratios, without suffering from coking. This material has neither lattice oxygens nor noble metals, yet a unique combination of numerous defects and a thin surface Ti1−yAlyO2−y/2 layer that is rich in oxygen vacancies makes it an active catalyst. Given the large number of compositions available, MAX phases may find applications in several heterogeneously catalyzed reactions.
机译:烷烃的脱氢或氧化脱氢(ODH)以直接从天然气/页岩气中生产烯烃的重要性日益提高。迄今为止尚未用于催化的MAX相Ti3AlC2有效地将正丁烷的ODH催化为丁烯和丁二烯,这是合成聚合物和其他化合物的重要中间体。结合了金属和陶瓷性能的催化剂,即使在低的O2:丁烷比下,也可以稳定运行至少30?h,而不会结焦。这种材料既没有晶格氧也没有贵金属,但是许多缺陷的独特组合以及富含氧空位的薄表面Ti1-yAlyO2-y / 2层使其成为活性催化剂。鉴于有大量可用的组成,MAX相可能会在几种异相催化反应中找到应用。

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