DFT calculations on the catalytic oxidation of CO over Si-doped (6,0) boron nitride nanotubes

被引:0
作者
Mehdi D. Esrafili
Nasibeh Saeidi
机构
[1] University of Maragheh,Laboratory of Theoretical Chemistry, Department of Chemistry
来源
Structural Chemistry | 2016年 / 27卷
关键词
CO oxidation; DFT; Single vacancy; BNNT; Energy barrier;
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摘要
The oxidation of carbon monoxide (CO) is important for a series of technological and environmental applications. In this work, the catalytic oxidation of CO on Si-doped (6,0) boron nitride nanotubes (BNNTs) is investigated by using density functional theory calculations. Reaction barriers and corresponding thermodynamic parameters were calculated using the M06-2X, B3LYP and wB97XD density functionals with 6-31G* basis set. Our results indicate that a vacancy defect in BNNT strongly stabilizes the Si adatom and makes it more positively charged. This charging enhances the adsorption of reaction gases (O2 and CO) and results in the change of the electronic structure properties of the tube. The calculated barrier of the reaction CO + O2 → CO2 + Oads on Si-doped BNNTs following the Langmuir–Hinshelwood is lower than that on the traditional noble metal catalysts. The second step of the oxidation would be the Eley–Rideal reaction (CO + Oads → CO2) with an energy barrier of about 1.8 and 10.1 kcal/mol at M06-2X/6-31G* level. This suggests that the CO oxidation catalyzed by the Si-doped BNNTs is likely to occur at the room temperature. The results also demonstrate that the activation energies and thermodynamic quantities calculated by M06-2X, B3LYP and wB97XD functionals are consistent with each other.
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页码:595 / 604
页数:9
相关论文
共 260 条
[1]  
Herzing AA(2008)Identification of active gold nanoclusters on iron oxide supports for CO oxidation Science 321 1331-1335
[2]  
Kiely CJ(2009)Low-temperature oxidation of CO catalyzed by Co Nature 458 746-749
[3]  
Carley AF(2010)O J Am Chem Soc 132 34-35
[4]  
Landon P(2002) nanorods J Am Chem Soc 124 14770-14779
[5]  
Hutchings GJ(1999)Inverse CeO J Am Chem Soc 121 7644-7652
[6]  
Xie X(2004)/CuO catalyst as an alternative to classical direct configurations for preferential oxidation of CO in hydrogen-rich stream J Am Chem Soc 126 8-9
[7]  
Li Y(2006)Catalytic role of gold in gold-based catalysts: a density functional theory study on the CO oxidation on gold J Am Chem Soc 128 9129-9136
[8]  
Liu ZQ(2001)A density functional theory study of the interaction between CO and O on a Pt surface: CO/Pt(111), O/Pt(111), and CO/O/Pt(111) J Am Chem Soc 123 1166-1172
[9]  
Haruta M(2006)A systematic study of CO oxidation on metals and metal oxides: density functional theory calculations J Chem Phys 124 234703-14706
[10]  
Shen W(2007)Theoretical evidence of PtSn alloy efficiency for CO Oxidation J Phys Chem C 111 14698-1446