论文标题
耐耐盐的子纳米脱氢催化剂:pt $ _n $ sn $ _x $/sio $ _2 $(n = 4,7)
Coking-Resistant Sub-Nano Dehydrogenation Catalysts: Pt$_n$Sn$_x$/SiO$_2$ (n = 4, 7)
论文作者
论文摘要
我们提出了PT $ _n $/SIO $ _2 $和PT $ _N $ sn $ sn $ _X $/SIO $ _2 $(N = 4,7)模型催化剂的合并实验/理论研究,用于使用乙烯Intermediate作为模型反应剂,用于对氢碳纤维进行沉浸式脱氢。发现受支持的纯PTN簇在C2D4的脱氢中高度活跃,由于碳沉积和烧结的结合而迅速停用,导致损失可访问的PT位点。在PTN簇中添加SN会导致C2D4脱氢和碳沉积的完全抑制,并且还可以稳定簇防止热烧结。理论表明,这两个系统都可以热访问众多群集结构和形成统计集合的吸附配置。虽然PT4/SIO2簇在DI-Sigma和PI键入配置中都结合乙烯,而Pt $ _4 $ SN $ _3 $ _3 $/SIO $ _2 $仅在Pi-Mode中绑定C2H4,而Di-Sigma键在电子和微小的特征抑制的di-Sigma键抑制。使用攀岩图像弹性带(CI-NEB)方法计算可访问簇异构体上的脱氢反应谱。
We present a combined experimental/theoretical study of Pt$_n$/SiO$_2$ and Pt$_n$Sn$_x$/SiO$_2$ (n = 4, 7) model catalysts for the endothermic dehydrogenation of hydrocarbons, using the ethylene intermediate as a model reactant. Supported pure Ptn clusters are found to be highly active toward dehydrogenation of C2D4, quickly deactivating due to a combination of carbon deposition and sintering, resulting in loss of accessible Pt sites. Addition of Sn to Ptn clusters results in the complete suppression of C2D4 dehydrogenation and carbon deposition, and also stabilizes the clusters against thermal sintering. Theory shows that both systems have thermal access to a multitude of cluster structures and adsorbate configurations that form a statistical ensemble. While Pt4/SiO2 clusters bind ethylene in both di-sigma and pi-bonded configurations, Pt$_4$Sn$_3$/SiO$_2$ binds C2H4 only in the pi-mode, with di-sigma bonding suppressed by a combination of electronic and geometric features of the PtSn clusters. Dehydrogenation reaction profiles on the accessible cluster isomers were calculated using the climbing image nudged elastic band (CI-NEB) method.