Title of article :
Tuning the selectivity for ring-opening reactions of methylcyclopentane over Pt catalysts: A mechanistic study from first-principles calculations
Author/Authors :
Zhijian Zhao، نويسنده , , Lyudmila V. Moskaleva، نويسنده , , Notker R?sch، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2012
Abstract :
Using density functional calculations, we studied the conversion of methylcyclopentane to its ring-opening products: branched hexanes [2-methylpentane (2MP), 3-methylpentane (3MP)], as well as unbranched n-hexane (nHx). We employed flat Pt(1 1 1) and stepped Pt(2 1 1) to describe terrace-rich large and defect-rich small Pt particles, respectively. On Pt(1 1 1), the barriers of all elementary steps for the paths leading to branched hexanes lie below 90 kJ mol−1, while the formation of nHx features a barrier of 116 kJ mol−1 in its C–C bond scission step. This higher barrier impedes the formation of nHx on Pt(1 1 1) and thus rationalizes the experimental observations that terrace-rich large Pt particles selectively produce branched hexanes. However, on Pt(2 1 1), the barrier of C–C scission for the formation of nHx decreases to 94 kJ mol−1, thus implying enhanced formation of nHx over the defects, in agreement with the essentially statistical product distribution observed with defect-rich small Pt particles.
Keywords :
Methanol-to-gasoline conversion , Zeolites , Shape selectivity , Hydrocarbon pool , Alkylation , Olefin methylation , Br?nsted acid catalysis , Surface methoxide groups
Journal title :
Journal of Catalysis
Journal title :
Journal of Catalysis