Graphane/Fluorographene Bilayer: Considerable C-H•••F-C Hydrogen Bonding and Effective Band Structure Engineering

被引:110
|
作者
Li, Yafei [1 ]
Li, Fengyu [1 ]
Chen, Zhongfang [1 ]
机构
[1] Univ Puerto Rico, Dept Chem, Inst Funct Nanomat, San Juan, PR 00931 USA
关键词
2-DIMENSIONAL C4H-TYPE POLYMER; BORON-NITRIDE; NONCOVALENT INTERACTIONS; ELECTRONIC-PROPERTIES; NANORIBBONS INSIGHT; MAGNETIC-PROPERTIES; MP2; ENERGY; GRAPHENE; FLUORINE; CRYSTAL;
D O I
10.1021/ja3040416
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Systematic density functional theory (DFT) computations revealed the existence of considerable C-H center dot center dot center dot F-C bonding between the experimentally realized graphane and fluorographene layers. The unique C-H center dot center dot center dot F-C bonds define the conformation of graphane/fluorographene (G/FG) bilayer and contribute to its stability. Interestingly, G/FG bilayer has an energy gap (0.5 eV) much lower than those of individual graphane and fluorographene. The binding strength of G/FG bilayer can be significantly enhanced by applying appropriate external electric field (E.-field). Especially, changing the direction and strength of E-field can effectively modulate the energy gap of G/FG bilayer, and correspondingly causes a semiconductor-metal transition. These findings open new opportunities in fabricating new electronics and opto-electronics devices based on G/FG bilayer, and call for more efforts in using weak interactions for band structure engineering.
引用
收藏
页码:11269 / 11275
页数:7
相关论文
共 50 条
  • [1] Weak C-H ••• F-C hydrogen bonds make a big difference in graphane/fluorographane and fluorographene/fluorographane bilayers
    Sun, Minglei
    Chou, Jyh-Pin
    Zhao, Yiming
    Yu, Jin
    Tang, Wencheng
    PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2017, 19 (41) : 28127 - 28132
  • [2] Highly fluorinated naphthalenes and bifurcated C-H•••F-C hydrogen bonding
    Loader, Jason R.
    Libri, Stefano
    Meijer, Anthony J. H. M.
    Perutz, Robin N.
    Brammer, Lee
    CRYSTENGCOMM, 2014, 16 (41) : 9711 - 9720
  • [3] Graphane/fully hydrogenated h-BN bilayer: marvellous dihydrogen bonding and effective band structure engineering
    Jiang, Junke
    Liang, Qiuhua
    Sun, Xiang
    Chen, Xianping
    Chen, Xianping
    2016 17TH INTERNATIONAL CONFERENCE ON ELECTRONIC PACKAGING TECHNOLOGY (ICEPT), 2016, : 730 - 735
  • [4] Weak C-H•••O and C-H•••F-C hydrogen bonds in the oxirane-trifluoromethane dimer
    Alonso, JL
    Antolínez, S
    Blanco, S
    Lesarri, A
    López, JC
    Caminati, W
    JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2004, 126 (10) : 3244 - 3249
  • [5] Weak hydrogen bonds C-H•••S and C-H•••F-C in the thiirane-trifluoromethane dimer
    Cocinero, EJ
    Sánchez, R
    Blanco, S
    Lesarri, A
    López, JC
    Alonso, JL
    CHEMICAL PHYSICS LETTERS, 2005, 402 (1-3) : 4 - 10
  • [6] Molecular Tuning of the Closed Shell C-H•••F-C Hydrogen Bond
    Lu, Norman
    Ley, Rebecca M.
    Cotton, Charles E.
    Chung, Wei-Cheng
    Francisco, Joseph S.
    Negishi, Ei-ichi
    JOURNAL OF PHYSICAL CHEMISTRY A, 2013, 117 (34): : 8256 - 8262
  • [7] MP2 and QCISD(T) study on the convergence of interaction energies of weak O-H•••F-C, C-H•••O, and C-H•••F-C hydrogen bridges
    Hyla-Kryspin, Isabella
    Haufe, Guenter
    Grimme, Stefan
    CHEMICAL PHYSICS, 2008, 346 (1-3) : 224 - 236
  • [8] C-H•••F-C hydrogen bonding in 1,2,3,5-tetrafluorobenzene and other fluoroaromatic compounds and the crystal structure of alloxan revisited
    Thakur, Tejender S.
    Kirchner, Michael T.
    Blaeser, Dieter
    Boese, Roland
    Desiraju, Gautam R.
    CRYSTENGCOMM, 2010, 12 (07): : 2079 - 2085
  • [9] Graphene/g-C3N4 bilayer: considerable band gap opening and effective band structure engineering
    Li, Xinru
    Dai, Ying
    Ma, Yandong
    Han, Shenghao
    Huang, Baibiao
    PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2014, 16 (09) : 4230 - 4235
  • [10] On difference of properties between organic fluorine hydrogen bond C-H•••F-C and conventional hydrogen bond
    Zhang, Guiqiu
    He, Wei
    Chen, Dezhan
    MOLECULAR PHYSICS, 2014, 112 (13) : 1736 - 1744