New Industry Creation Hatchery Center (NICHe), Tohoku University , Sendai, Miyagi 980-8579, Japan.
Thermophysics Institute, Siberian Branch, Russian Academy of Sciences , Novosibirsk 630090, Russia.
ACS Appl Mater Interfaces. 2016 Mar 2;8(8):5290-9. doi: 10.1021/acsami.5b11384. Epub 2016 Feb 19.
Using the first-principles approach, we investigated the electronic and chemical properties of wurtzite silicon carbide (2H-SiC) monolayer and thin film structures and substantiated their catalytic activity toward CO oxidation. 2H-SiC monolayer, being planar, is quite stable and has moderate binding with O2, while CO interacts physically; thus, the Eley-Rideal (ER) mechanism prevails over the Langmuir-Hinshelwood (LH) mechanism with an easily cleared activation barrier. Contrarily, 2H-SiC thin film, which exhibits a nonplanar structure, allows moderate binding of both CO and O2 on its surface, thus favoring the LH mechanism over the ER one. Comprehending these results leads to a better understanding of the reaction mechanisms involving structural contrast. Weak overlapping between the 2p(z)(C) and 3p(z)(Si) orbitals of the SiC monolayer system has been found to be the primary reason to revert the active site toward sp(3) hybridization, during interaction with the molecules. In addition, the influences of graphite and Ag(111) substrates on the CO oxidation mechanism were also studied, and it is observed that the ER mechanism is preserved on SiC/G system, while CO oxidation on the SiC/Ag(111) system follows the LH mechanism. The calculated Sabatier activities of the SiC catalysts show that the catalysts are very efficient in catalyzing CO oxidation.
采用第一性原理方法,我们研究了纤锌矿碳化硅(2H-SiC)单层和薄膜结构的电子和化学性质,并证实了它们对 CO 氧化的催化活性。2H-SiC 单层是平面的,非常稳定,对 O2 的结合适中,而 CO 则是物理相互作用;因此,Eley-Rideal(ER)机制比 Langmuir-Hinshelwood(LH)机制更占优势,具有易于清除的活化能垒。相反,具有非平面结构的 2H-SiC 薄膜允许 CO 和 O2 在其表面适度结合,因此有利于 LH 机制而不是 ER 机制。理解这些结果有助于更好地理解涉及结构对比的反应机制。在与分子相互作用时,我们发现 SiC 单层体系中 2p(z)(C)和 3p(z)(Si)轨道的弱重叠是将活性位返回到 sp(3)杂化的主要原因。此外,我们还研究了石墨和 Ag(111)基底对 CO 氧化机制的影响,结果表明 ER 机制在 SiC/G 体系中得到保留,而在 SiC/Ag(111)体系中 CO 氧化遵循 LH 机制。计算得到的 SiC 催化剂的 Sabatier 活性表明,这些催化剂在催化 CO 氧化方面非常有效。