Alhajri Fawziah, Fadlallah Mohamed M, Alkhaldi Amal, Maarouf Ahmed A
Department of Physics, Science College, Imam Abdulrahman Bin Faisal University, Jubail 3196, Saudi Arabia.
Physics Department, Faculty of Science, Benha University, Benha 13518, Egypt.
Nanomaterials (Basel). 2022 Aug 10;12(16):2739. doi: 10.3390/nano12162739.
Recent advances in experimental techniques allow for the fabrication of hybrid structures. Here, we study the electronic and molecular adsorption properties of the graphene (G)/hexagonal boron nitride (-BN)-MXenes (Mo2C) hybrid nanosheets. We use first-principles calculations to explore the structure and electronic properties of the hybrid structures of G-2H-Mo2C and -BN-2H-Mo2C with two different oxygen terminations of the Mo2C surface. The embedding of G or -BN patches creates structural defects at the patch-Mo2C border and adds new states in the vicinity of the Fermi energy. Since this can be utilized for molecular adsorption and/or sensing, we investigate the ability of the G-M-O1 and BN-M-O1 hybrid structures to adsorb twelve molecules. Generally, the adsorption on the hybrid systems is significantly higher than on the pristine systems, except for N2 and H2, which are weakly adsorbed on all systems. We find that OH, NO, NO2, and SO2 are chemisorbed on the hybrid systems. COOH may be chemisorbed, or it may dissociate depending on its location at the edge between the G/-BN and the MXene. NH3 is chemisorbed/physisorbed on the BN/G-M-O1 systems. CO, H2S, CO2, and CH4 are physisorbed on the hybrid systems. Our results indicate that the studied hybrid systems can be used for molecular filtration/sensing and catalysis.
实验技术的最新进展使得混合结构的制造成为可能。在此,我们研究了石墨烯(G)/六方氮化硼(-BN)-MXenes(Mo2C)混合纳米片的电子和分子吸附特性。我们使用第一性原理计算来探索具有Mo2C表面两种不同氧端基的G-2H-Mo2C和-BN-2H-Mo2C混合结构的结构和电子特性。G或-BN片层的嵌入在片层-Mo2C边界处产生结构缺陷,并在费米能级附近增加新的态。由于这可用于分子吸附和/或传感,我们研究了G-M-O1和BN-M-O1混合结构吸附十二种分子的能力。一般来说,除了N2和H2在所有系统上吸附较弱外,混合系统上的吸附明显高于原始系统。我们发现OH、NO、NO2和SO2在混合系统上化学吸附。COOH可能化学吸附,也可能根据其在G/-BN与MXene之间边缘的位置而解离。NH3在BN/G-M-O1系统上化学吸附/物理吸附。CO、H2S、CO2和CH4在混合系统上物理吸附。我们的结果表明,所研究的混合系统可用于分子过滤/传感和催化。