Strain tuning of optoelectronic properties of covalent organic framework bilayers and heterostructures

被引:3
|
作者
Alihosseini, M. [1 ]
Neek-Amal, M. [1 ]
机构
[1] Shahid Rajaee Teacher Training Univ, Dept Phys, Lavizan 16875163, Tehran, Iran
关键词
DER-WAALS HETEROSTRUCTURE; GRAPHITIC CARBON NITRIDE; POROUS MATERIALS; ELECTRONIC-PROPERTIES; OPTICAL-PROPERTIES; GREENS-FUNCTION; ENERGY-STORAGE; MICROPOROSITY; EXCITATIONS; SEPARATION;
D O I
10.1103/PhysRevB.108.165403
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Heterostructures composed of two-dimensional materials have gained significant attention due to their unique properties and potential applications in various fields. Covalent organic frameworks (COFs) represent a novel class of organic porous materials that have shown promise in gas storage, catalysis, and optoelectronics. In this paper, we present a first-principles study of the optoelectronic properties of bilayers and heterostructures of C6N6 and B6O6 COFs, including excitonic effects within the G0W0-BSE approach and the effects of van der Waals corrections. Our study shows that the energetically favorable configuration is AC-stacking, where the upper pore is covered by the C-N (B-O) ring of the bottom layer. We also found that the AC-stacking C6N6/B6O6 heterostructure exhibits a surface buckling of 0.55 angstrom and an intrinsic type II band alignment, resulting in a redshift in optical absorption. The calculated band edge alignments for C6N6 and B6O6 monolayers and heterostructures using the HSE06 hybrid functional affirm their suitability for the photocatalytic splitting of water. Furthermore, we investigated the impact of strain on the band gap and demonstrated that increasing tensile strain leads to a decrease in the distance between the two layers, causing an increase in the electronic band gap and optical gap. These results provide a solid theoretical foundation for future experimental investigations and suggest potential applications in optoelectronic devices. Overall, our study sheds light on the optoelectronic properties of COF heterostructures and highlights their potential for use in a range of important applications.
引用
收藏
页数:12
相关论文
共 50 条
  • [21] Strain engineering for tuning the electronic and optical properties of lithium niobate for optoelectronic applications
    Raturi, Ashish
    Mittal, Poornima
    Choudhary, Sudhanshu
    SOLID STATE COMMUNICATIONS, 2023, 361
  • [22] Tuning electronic and optical properties of a new class of covalent organic frameworks
    Yang, Li-Ming
    Pushpa, Raghani
    JOURNAL OF MATERIALS CHEMISTRY C, 2014, 2 (13) : 2404 - 2416
  • [23] Tuning the stacking behaviour of a 2D covalent organic framework through non-covalent interactions
    Haase, F.
    Gottschling, K.
    Stegbauer, L.
    Germann, L. S.
    Gutzler, R.
    Duppel, V.
    Vyas, V. S.
    Kern, K.
    Dinnebier, R. E.
    Lotsch, B. V.
    MATERIALS CHEMISTRY FRONTIERS, 2017, 1 (07) : 1354 - 1361
  • [24] Strain engineered semiconductor heterostructures for novel optoelectronic devices
    Shen, H
    QUANTUM WELL AND SUPERLATTICE PHYSICS VI, 1996, 2694 : 42 - 50
  • [25] Strain engineered semiconductor heterostructures for novel optoelectronic devices
    Shen, PH
    Pamulapati, J
    Wraback, M
    Zhou, WM
    Taysing-Lara, M
    Dutta, M
    TWENTIETH ARMY SCIENCE CONFERENCE - AWARD WINNING PAPERS, 1997, : 111 - 115
  • [26] Substituent Effects on the Photocatalytic Properties of a Symmetric Covalent Organic Framework
    Liu, Ting-Ting
    Wu, Xin-Ping
    Gong, Xue-Qing
    CHINESE JOURNAL OF CHEMICAL PHYSICS, 2022, 35 (04) : 647 - 654
  • [27] Covalent Organic Framework/Graphene Hybrids: Synthesis, Properties, and Applications
    Wang, Boya
    Shen, Liguo
    He, Yabing
    Chen, Cheng
    Yang, Zhi
    Fei, Lingya
    Xu, Jiujing
    Li, Bisheng
    Lin, Hongjun
    SMALL, 2024, 20 (23)
  • [28] Aluminum Phosphide van der Waals Bilayers with Tunable Optoelectronic Properties under Biaxial Strain
    Mao, Caixia
    Ni, Hao
    Qian, Libing
    Hu, Yonghong
    Huang, Haiming
    CRYSTALS, 2023, 13 (04)
  • [29] Electron donor-acceptor (D-A) tuning to achieve soluble covalent organic polymers for optoelectronic devices
    Li, Xueli
    Yue, Xianjin
    Wang, Yifei
    Chen, Tengge
    Zhou, Yihui
    Liu, Di
    Xiang, Hengyang
    Zhang, Shengli
    Zeng, Haibo
    Xiang, Zhonghua
    ESCIENCE, 2023, 3 (01):
  • [30] Covalent Organic Framework Nanohydrogels
    Tao, Xin
    Wang, Zhen
    Zhang, Qing-Pu
    Liu, Ningning
    Sun, Yu-Ling
    Niu, Ruo-Xin
    Sun, Ruixue
    Wang, Xiaoyan
    Tan, Bien
    Zhang, Chun
    JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2023, 145 (46) : 25471 - 25477