脱氢
丙烷
催化作用
烷烃
产量(工程)
吸热过程
锐钛矿
化学
质子
材料科学
无机化学
物理化学
有机化学
光催化
复合材料
吸附
物理
量子力学
作者
Jianshuo Zhang,Yuki Nakaya,Ken‐ichi Shimizu,Shinya Furukawa
标识
DOI:10.1002/anie.202300744
摘要
Abstract Electric field catalysis using surface proton conduction, in which proton hopping and collision on the reactant are promoted by external electricity, is a promising approach to break the thermodynamic equilibrium limitation in endothermic propane dehydrogenation (PDH). This study proposes a catalyst design concept for more efficient electroassisted PDH at low temperature. Sm was doped into the anatase TiO 2 surface to increase surface proton density by charge compensation. Pt−In alloy was deposited on the Sm‐doped TiO 2 for more favorable proton collision and selective propylene formation. The catalytic activity in electroassisted PDH drastically increased by doping an appropriate amount of Sm (1 mol % to Ti) where the highest propylene yield of 19.3 % was obtained at 300 °C where the thermodynamic equilibrium yield was only 0.5 %. Results show that surface proton enrichment boosts alkane dehydrogenation at low temperature.
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