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Reaction pathway for partial hydrogenation of 1,3-butadiene over Pt/SiO2

机译:部分氢化反应通路1,三丁基/ Pt /二氧化矽

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The reaction pathway for partial hydrogenation of 1,3-butadiene over a Pt/SiO2 catalyst was explored with a combination of in situ diffuse reflectance infrared Fourier transform (DRIFT) spectroscopy, intrinsic kinetics, and density functional theory (DFT) calculations. Under the present experimental conditions, the catalyst displayed a nearly constant product composition with ~97% selectivity to butenes. In situ DRIFT characterization revealed that the 1-buten-3-yl radical (1B3R), generated from the addition of one hydrogen atom to a terminal carbon of 1,3-butadiene, was the dominant intermediate in the partial hydrogenation of 1,3-butadiene. Kinetic analysis showed that the hydrogenation of 1B3R was the rate-determining step in the formation of butenes. Based on the above experimental results, DFT calculations were employed to investigate the reaction pathway with 1B3R as the intermediate on a Pt(111) surface. Interestingly, it was found that 1B3R can be easily formed from the hydrogenation of 1,3-butadiene with a di-σ configuration rather than the most stable tetra-σ structure on the Pt(111) surface. This hydrogenation step occurs between the non-coordinated terminal carbon and a hydrogen atom on a top site with an energy barrier of 23.2 kJ mol~(-1). The second hydrogenation step from 1B3R to butenes requires relatively higher activation barriers to proceed, being consistent with the experimental kinetics. Finally, the selectivity order for butenes and the structure sensitivity of Pt-catalyzed partial hydrogenation of 1,3-butadiene were discussed
机译:部分加氢的反应途径1,三丁基/ Pt /二氧化硅催化剂探索与原位分散的组合反射红外傅里叶变换(漂移)光谱学、内在动力学和密度泛函理论(DFT)计算。目前的实验条件,催化剂显示一个几乎恒定的产品构成~ 97%丁烯的选择性。描述1-buten-3-yl透露激进(1 b3r)产生的一个氢原子碳的一个终端1、三是主导中间部分氢化的1,三丁基。动力学分析表明,加氢1 b3r的速率决定步骤丁烯的形成。实验结果,DFT计算用来调查反应通路1 b3r Pt(111)表面的中间。有趣的是,发现1 b3r可以容易加氢的形成1,三丁基di -σ配置比四-σ结构最稳定Pt(111)表面。non-coordinated终端之间的碳和一个顶级网站上氢原子的能量23.2 kJ摩尔~(1)的障碍。从1丁烯b3r需要加氢一步激活壁垒较高,符合实验动力学。最后,选择性丁烯和秩序的结构敏感性Pt-catalyzed部分三丁基氢化作用,进行了讨论

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