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Active-oxygen species on non-reducible rare-earth-oxide-based catalysts in oxidative coupling of methane

机译:甲烷氧化偶合中不可还原稀土氧化物基催化剂上的活性氧

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摘要

From supplementary in situ Raman spectroscopic studies of active-oxygen species on non-reducible rare-earth-oxide-based catalysts in the oxidative coupling of methane (OCM) and structural adaptability considerations, further support has been obtained for our proposal that there may be an active and elusive precursor (of (O) under bar (-)(2) and (O) under bar (2-)(2) adspecies), most probably (O) under bar (2-)(3) formed from reversible redox coupling of an (O) under bar (2) adspecies at an anionic vacancy with a neighboring O2- in the surface lattice. This active precursor may initiate H abstraction from CH4 and be itself converted to (O) under barH(-) + (O) under bar (-)(2), or it may abstract an electron from the oxide lattice and be converted to (O) under bar (2-)(2) + (O) under bar (-). The prospect of developing this type of OCM catalysts is discussed.
机译:通过对甲烷氧化偶联(OCM)中不可还原的稀土氧化物基催化剂上活性氧物种进行的原位拉曼光谱补充研究以及结构适应性考虑,我们的建议得到了进一步的支持,即可能存在(第(-)(2)条下的(O)和第(2-)(2)条下的(O)的活性且难以捉摸的前体),很可能是由(2-)(3)下的(O)形成的条(2)下的(O)在阴离子空位时与表面晶格中的相邻O2-发生可逆的氧化还原偶联。该活性前体可引发从CH4夺取H并在barH(-)下本身转化为(O)+在Bar(-)(2)下变为(O),或者可从氧化物晶格中提取电子并转化为(条(2-)(2)下的O)+条(-)下的(O)。讨论了开发这类OCM催化剂的前景。

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