脱氢
材料科学
丙烷
氮化硼
化学工程
浸出(土壤学)
六方氮化硼
硼
催化作用
热液循环
无机化学
选择性
密度泛函理论
氮化物
表面工程
氧化磷酸化
工作职能
电子
作者
Yanan Huang,Haijiao Lu,Ni Ouyang,Guoqiang Shen,Lars Thomsen,Xinping Zhang,Jinshu Tian,Hao Chen
摘要
ABSTRACT Hexagonal boron nitride (h‐BN) exhibits high selectivity toward olefins in oxidative dehydrogenation of propane (ODHP), however, the active sites (BO x species) for ODHP are easily leached under high‐temperature and water‐containing conditions, leading to catalyst deactivation. In this work, we developed a molten Mg strain engineering strategy to treat h‐BN via a compression–expansion process to induce lattice distortion, which resulted in significant electron enrichment across the BO x surface. Experiments combined with density functional theory calculations revealed that this electron enrichment surface not only enhanced activity for ODHP but also prevented the leaching of BO x by H 2 O during the ODHP. As a result, the Mg‐induced lattice‐distored h‐BN exhibited enhanced ODHP activity and hydrothermal stability, with a 17.2% higher propane conversion than the as‐synthesized BN and a stable propane conversion above 50% for 35 h without decline. This work tailors the h‐BN structure to adjust electron distribution and prevent active‐site leaching in high‐temperature and water‐containing environments, enhancing its industrial applicability.
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