DFT analysis of Re-modified WSe2 monolayers for adsorption of CO, C2H2, and C2H4

被引:3
作者
Sarkar, Suman [1 ]
Debnath, Papiya [2 ]
De, Debashis [3 ]
Chanda, Manash [4 ]
机构
[1] UEM, EEE Dept, IEM, Kolkata, India
[2] TINT, BSH Dept, Kolkata, India
[3] MAKAUT, CSE Dept, Kolkata, India
[4] MSIT, ECE Dept, Kolkata, India
关键词
dissolved gas analysis (DGA); transformer oil; charge transfer; band gap; DFT; NEGF; GAS SENSOR; COMPUTATIONAL INTELLIGENCE; TRANSFORMER; DIAGNOSIS; DETECTOR;
D O I
10.1088/1361-651X/ad6fbe
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The sensing performances of the Rhenium (Re) doped Tungsten Diselenide (WSe2) monolayer for detecting small gas molecules such as carbon monoxide (CO), acetylene (C2H2), and ethylene (C2H4) have been analyzed in this paper. Density functional theory and non-equilibrium Green's function have been used to examine the electrical and geometric structures of re-adorned WSe2 monolayer when subjected to dissolved gas analysis gases in the transformer oil. Hence, the electrochemical characteristics like Band diagram and density of states are detailed. Adsorption systems' recovery capabilities, Mulliken population, and adsorption energy have been examined to determine their stability. Studies also show that Re-doped WSe2 monolayer exerts deformation and as a result, the band gap narrowed down. At ambient temperature (273 K-300 K), the Re-doped WSe2 exhibits better adsorption of C2H4 over C2H2 and CO as the C2H4 has higher adsorption energy compared to the C2H2 and CO. Besides, V-I characteristics of the Re doped WSe2 layer after adsorption of the CO, C2H2, and C2H4 are detailed which signifies the efficacy of the Re doped WSe2 monolayer.
引用
收藏
页数:12
相关论文
共 28 条
[1]   Theoretical Investigation of The interaction Between Noble Metals (Ag, Au, Pd, Pt) and Stanene Nanosheets: A DFT Study [J].
Abbasi, Amirali .
JOURNAL OF INORGANIC AND ORGANOMETALLIC POLYMERS AND MATERIALS, 2019, 29 (06) :1895-1915
[2]   Explosive vapor detection using novel graphdiyne nanoribbons-a first-principles investigation [J].
Bhuvaneswari, R. ;
Nagarajan, V. ;
Chandiramouli, R. .
STRUCTURAL CHEMISTRY, 2020, 31 (02) :709-717
[3]   Adsorption and sensing of CO and C2H2 by S-defected SnS2 monolayer for DGA in transformer oil: A DFT study [J].
Cui, Hao ;
Jia, Pengfei ;
Peng, Xiaoyan ;
Li, Peng .
MATERIALS CHEMISTRY AND PHYSICS, 2020, 249
[4]   Pd-doped MoS2 monolayer: A promising candidate for DGA in transformer oil based on DFT method [J].
Cui, Hao ;
Zhang, Xiaoxing ;
Zhang, Guozhi ;
Tang, Ju .
APPLIED SURFACE SCIENCE, 2019, 470 :1035-1042
[5]   Assessment of Computational Intelligence and Conventional Dissolved Gas Analysis Methods for Transformer Fault Diagnosis [J].
Faiz, Jawad ;
Soleimani, Milad .
IEEE TRANSACTIONS ON DIELECTRICS AND ELECTRICAL INSULATION, 2018, 25 (05) :1798-1806
[6]   Transformer oil quality in view of its physicochemical, electrical properties and dissolved gas analysis [J].
Falatah, Ahmed M. ;
El-Naggar, Ashraf Yehia .
PETROLEUM SCIENCE AND TECHNOLOGY, 2018, 36 (19) :1552-1558
[7]   Characteristics of Tin Oxide Chromatographic Detector for Dissolved Gases Analysis of Transformer Oil [J].
Fan, Jingmin ;
Liu, Zhe ;
Meng, Anbo ;
Yin, Hao ;
Sun, Qiuqin ;
Bin, Feng ;
Jiang, Qinji .
IEEE ACCESS, 2019, 7 :94012-94020
[8]   DEVELOPMENT OF OIL-DISSOLVED HYDROGEN GAS DETECTOR FOR DIAGNOSIS OF TRANSFORMERS [J].
INOUE, Y ;
SUGANUMA, K ;
KAMBA, M ;
KIKKAWA, M .
IEEE TRANSACTIONS ON POWER DELIVERY, 1990, 5 (01) :226-232
[9]   On the Application of Transition State Theory to Atomic-Scale Wear [J].
Jacobs, Tevis D. B. ;
Gotsmann, Bernd ;
Lantz, Mark A. ;
Carpick, Robert W. .
TRIBOLOGY LETTERS, 2010, 39 (03) :257-271
[10]   First-principles calculations of adsorption sensitivity of Au-doped MoS2 gas sensor to main characteristic gases in oil [J].
Jiang, Tianyan ;
He, Qiaoqing ;
Bi, Maoqiang ;
Chen, Xi ;
Sun, Hao ;
Tao, Luqi .
JOURNAL OF MATERIALS SCIENCE, 2021, 56 (24) :13673-13683