Nguyen D C, Phung Thanh Khoa, Vo Dai-Viet N, Le Tu Hai, Khieu Dinh Quang, Pham Thong Le Minh
Laboratory of Theoretical and Computational Biophysics, Ton Duc Thang University Ho Chi Minh City Vietnam.
Faculty of Applied Sciences, Ton Duc Thang University Ho Chi Minh City Vietnam.
RSC Adv. 2020 Nov 9;10(67):40663-40672. doi: 10.1039/d0ra06844f.
Understanding the effect of Al doping on CO adsorption at ZnO(101̄0) is crucial for designing a high-performance CO gas sensor. In this work, we investigated the adsorption properties of CO on pristine and Al-doped ZnO(101̄0) by performing DFT+U calculations. It is found that the doping of Al on ZnO(101̄0) induces the semiconductor-to-metal transition and thus enhances the conductance of the substrate. Compared to the pristine ZnO(101̄0), the adsorption energy of CO on the Al-doped surfaces is significantly enhanced since Al doping has the effect of strengthening the adsorption bond. The bonding analysis reveals that CO adsorbs on pristine ZnO(101̄0) the sole σ-dative donation between the CO HOMO 5σ and the empty states of the Zn cation while π-back donation from filled states of Zn or Al cations to the CO 2π* LUMO is facilitated on the Al-doped surfaces. The π-back donation also results in the red-shift of the CO stretching frequency on the Al-doped surfaces, contrasting to the blue-shift on the pristine surface. The simulated results demonstrate that the doping of Al to a three-fold coordinated site on ZnO(101̄0) is highly beneficial for boosting the performance of the CO gas sensor. Our theoretical investigation provides fundamental insights into the effect of Al doping on the sensing mechanism for CO at the ZnO(101̄0) surface.
了解铝掺杂对ZnO(101̄0)上CO吸附的影响对于设计高性能CO气体传感器至关重要。在这项工作中,我们通过进行DFT+U计算研究了CO在原始和铝掺杂的ZnO(101̄0)上的吸附特性。研究发现,在ZnO(101̄0)上掺杂Al会引起半导体到金属的转变,从而提高基底的电导率。与原始的ZnO(101̄0)相比,由于Al掺杂具有增强吸附键的作用,CO在Al掺杂表面上的吸附能显著增强。键合分析表明,CO在原始ZnO(101̄0)上吸附时,是CO的HOMO 5σ与Zn阳离子的空态之间的唯一σ-给体捐赠,而在Al掺杂表面上,从Zn或Al阳离子的填充态到CO的2π* LUMO的π-反馈捐赠得到促进。π-反馈捐赠还导致Al掺杂表面上CO伸缩频率的红移,这与原始表面上的蓝移形成对比。模拟结果表明,在ZnO(101̄0)的三重配位位点上掺杂Al对提高CO气体传感器的性能非常有益。我们的理论研究为Al掺杂对ZnO(101̄0)表面CO传感机制的影响提供了基本见解。