Bafekry, A. and Fadlallah, M.M. and Nguyen, C. and Gogova, D. (2020) Vertical two-dimensional layered conjugated porous organic network structures of poly-benzimidazobenzophenanthroline (BBL): A first-principles study. Applied Physics Letters, 117 (23): 233101. ISSN 36951
Vertical two-dimensional layered conjugated porous organic network structures of poly-benzimidazobenzophenanthroline (BBL)- A first-principles study..pdf
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Vertical two-dimensional layered conjugated porous organic network structures of poly-benzimidazobenzophenanthroline (BBL)- A first-principles study..pdf
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Abstract
Very recently, the 2D form of poly-benzimidazobenzophenanthroline (BBL) structures has been successfully fabricated [Noh et al., Nat. Commun. 369, 670 (2020)]. Motivated by these exciting experimental results on 2D layered BBL structures, herein we perform density functional theory-based first-principles calculations in order to gain insight into the structural, electronic, and optical properties of the BBL monolayer and bilayer honeycomb crystal structures (planar and vertical). Our computational structural optimization reveals that the BBL monolayer crystallizes in a puckered, anisotropic hexagonal structure, while the BBL bilayer is composed of covalently bonded shifted one with respect to the other BBL layers. Two terminations with hydrogen and fluorine atoms are considered for the BBL bilayer, namely, H-BBL and F-BBL, respectively. The direct bandgaps of H-BBLs and F-BBLs are ∼1 eV and ∼1.2 eV. The top of the valence band and the bottom of the conduction band are flat due to the localized carbon states. The BBL monolayer and bilayer can absorb a wide range of visible light. The calculated refractive index of the BBL monolayer is ∼1, i.e., it is smaller than the refractive index of the common natural or synthetic polymers. © 2020 Author(s).
Item Type: | Article |
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Divisions: | Faculties > Faculty of Mechanical Engineering |
Identification Number: | 10.1063/5.0035132 |
Uncontrolled Keywords: | Calculations; Computation theory; Density functional theory; Monolayers; Natural polymers; Refractive index; Covalently bonded; First-principles calculation; First-principles study; Fluorine atoms; Hexagonal structures; Organic network structures; Synthetic polymers; Visible light; Structural optimization |
Additional Information: | Language of original document: English. |
URI: | http://eprints.lqdtu.edu.vn/id/eprint/8845 |