Determining the binding mechanism of B12N12(Zn) with CH4, CO, CO2, H2O, N2, NH3, NO, NO2, O2, and SO2 gases

被引:7
|
作者
Qadir, Karwan Wasman [1 ,2 ]
Mohammadi, Mohsen Doust [3 ,4 ]
Ridha, Noor J. [5 ]
Abdullah, Hewa Y. [6 ]
机构
[1] Salahaddin Univ, Coll Educ, Dept Phys, Erbil 44002, Kurdistan Regio, Iraq
[2] Erbil Polytech Univ, Erbil Technol Coll, Renewable Energy Technol Dept, Erbil 44001, Kurdistan Regio, Iraq
[3] Univ Tehran, Coll Sci, Sch Chem, Tehran 14176, Iran
[4] Cyprus Inst, Climate & Atmosphere Res Ctr, CY-2121 Nicosia, Cyprus
[5] Univ Kerbala, Coll Sci, Dept Phys, Kerbala, Iraq
[6] Tishk Int Univ, Fac Educ, Phys Educ Dept, Erbil 44001, KurdistanRegion, Iraq
关键词
Global optimization; DFT; Intermolecular interaction; NBO; QTAIM; QUANTUM-THEORY; DENSITY; SURFACE; DESIGN; ATOMS;
D O I
10.1016/j.micromeso.2024.113289
中图分类号
O69 [应用化学];
学科分类号
081704 ;
摘要
In this study, an exploration of molecular interactions between CH4, CO, CO2, H2O, N2, NH3, NO, NO2, O2, SO2 gas molecules and B12N12(Zn) nanocage is conducted using advanced computational techniques, omega B97XD/ Def2tzvp, unraveling fundamental behaviors. Employing global optimization methods and sophisticated tools like the bee colony algorithm in ABCluster software, the research offers insights into energy adsorption processes, confirming molecular stability through DFT calculations. The determination of electrophilicity index values through conceptual DFT analysis sheds light on relative reactivity levels and charge transfer phenomena, emphasizing that in some cases the nanocage's role as a potential electron acceptor. Natural bond analysis of charge transfer direction and valence shell orbital interactions enriches understanding, supported by comprehensive parameter compilation and critical point visualization. Further confirmation of interaction types and strengths through G(r)/V(r) ratios and ELF values enhances comprehension through quantum theory of atoms in molecule analysis. Ultimately, this study contributes significantly to computational chemistry, laying foundations for molecular design and engineering advancements. It sets the stage for future progress in materials science and catalysis, promising innovation in sustainable energy solutions and technological development.
引用
收藏
页数:14
相关论文
共 50 条
  • [21] DISSOCIATIVE IONIZATION OF N2, O2, H2O, CO2 AND ETHANE
    EHRHARDT, H
    KRESLING, A
    ZEITSCHRIFT FUR NATURFORSCHUNG PART A-ASTROPHYSIK PHYSIK UND PHYSIKALISCHE CHEMIE, 1967, A 22 (12): : 2036 - &
  • [22] PHOTODISSOCIATIVE IONIZATION IN 21-41 EV REGION - O-2, N-2, CO, NO, CO2, H2O, NH3 AND CH4
    KRONEBUSCH, PL
    BERKOWITZ, J
    INTERNATIONAL JOURNAL OF MASS SPECTROMETRY, 1976, 22 (3-4) : 283 - 306
  • [23] Preheating and combustion characteristics of anthracite under O2/N2, O2/CO2 and O2/CO2/H2O atmospheres
    Zhang, Xiaoyu
    Zhu, Shujun
    Zhu, Jianguo
    Liu, Yuhua
    Zhang, Jiahang
    Hui, Jicheng
    Ding, Hongliang
    Cao, Xiaoyang
    Lyu, Qinggang
    ENERGY, 2023, 274
  • [24] Comparison of the Reburning Chemistry in O2/N2, O2/CO2, and O2/H2O Atmospheres
    He, Yizhuo
    Luo, Jianghui
    Li, Yangguang
    Jia, Huiqiao
    Wang, Feng
    Zou, Chun
    Zheng, Chuguang
    ENERGY & FUELS, 2017, 31 (10) : 11404 - 11412
  • [25] Comparative study on flame instability and combustion characteristics of CH4/O2/CO2 and CH4/O2/N2 mixtures
    Zhong, Feixiang
    Zheng, Ligang
    Wang, Xi
    Shao, Xiangyu
    Jia, Hailin
    Shi, Zhanwang
    Zhang, Jianlei
    JOURNAL OF THE ENERGY INSTITUTE, 2022, 102 : 70 - 81
  • [26] Release of N2, CH4, CO2, and H2O from surface ices on Enceladus
    Hodyss, Robert
    Goguen, Jay D.
    Johnson, Paul V.
    Campbell, Colin
    Kanik, Isik
    ICARUS, 2008, 197 (01) : 152 - 156
  • [27] SAFT Regimes and Laminar Burning Velocities: A Comparative Study of NH3 + N2 + O2 and CH4 + N2 + O2 Flames
    Han, Xinlu
    Wang, Zhihua
    Lin, Riyi
    Konnov, Alexander A.
    ENERGY & FUELS, 2023, 37 (11) : 7958 - 7972
  • [28] Intermolecular interaction of Al8O12 oxymetallic clusters in the detection of atmospheric pollutants: a DFT exploration of CO, CO2, H2, N2, NO, NO2, O2, and SO2, binding mechanisms
    Laraib, Sajida Riffat
    Liu, Ji
    Xia, Yuan-gu
    Wu, Yang-wen
    Mohammadi, Mohsen Doust
    Noor, Nayab Fatima
    Lu, Qiang
    RSC ADVANCES, 2025, 15 (10) : 7489 - 7508
  • [29] NH(B1-SIGMA-+) DEACTIVATION/REACTION RATE CONSTANTS FOR THE COLLISIONAL GASES H2,CH4, C2H6,AR,N2,O2,H2O, AND CO2
    VANDIJK, CA
    SANDHOLM, ST
    DAVIS, DD
    BRADSHAW, JD
    JOURNAL OF PHYSICAL CHEMISTRY, 1989, 93 (17): : 6363 - 6367
  • [30] Sustainable nanoporous carbon for CO2, CH4, N2, H2 adsorption and CO2/CH4 and CO2/N2 separation
    Park, Jaewoo
    Attia, Nour F.
    Jung, Minji
    Lee, Myoung Eun
    Lee, Kiyoung
    Chung, Jaewoo
    Oh, Hyunchul
    ENERGY, 2018, 158 : 9 - 16