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Halogen‐Dependent Surface Confinement Governs Selective Alkane Functionalization to Olefins
Authors:Guido Zichittella  Matthias Scharfe  Begoa Purtolas  Vladimir Paunovi&#x;  Patrick Hemberger  Andras Bodi  Lszl Szentmiklsi  Núria Lpez  Javier Prez‐Ramírez
Institution:Guido Zichittella,Matthias Scharfe,Begoña Puértolas,Vladimir Paunovi?,Patrick Hemberger,Andras Bodi,László Szentmiklósi,Núria López,Javier Pérez‐Ramírez
Abstract:The product distribution in direct alkane functionalization by oxyhalogenation strongly depends on the halogen of choice. We demonstrate that the superior selectivity to olefins over an iron phosphate catalyst in oxychlorination is the consequence of a surface‐confined reaction. By contrast, in oxybromination alkane activation follows a gas‐phase radical‐chain mechanism and yields a mixture of alkyl bromide, cracking, and combustion products. Surface‐coverage analysis of the catalyst and identification of gas‐phase radicals in operando mode are correlated to the catalytic performance by a multi‐technique approach, which combines kinetic studies with advanced characterization techniques such as prompt‐gamma activation analysis and photoelectron photoion coincidence spectroscopy. Rationalization of gas‐phase and surface contributions by density functional theory reveals that the molecular level effects of chlorine are pivotal in determining the stark selectivity differences. These results provide strategies for unraveling detailed mechanisms within complex reaction networks.
Keywords:density functional theory  hydrogen halides  olefin selectivity  operando spectroscopies  reaction mechanisms
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