Please use this identifier to cite or link to this item: https://dspace.iiti.ac.in/handle/123456789/9137
Title: Stanene based gas sensors: Effect of spin-orbit coupling
Authors: Garg, Priyanka
Pathak, Biswarup
Issue Date: 2017
Publisher: Royal Society of Chemistry
Citation: Garg, P., Choudhuri, I., & Pathak, B. (2017). Stanene based gas sensors: Effect of spin-orbit coupling. Physical Chemistry Chemical Physics, 19(46), 31325-31334. doi:10.1039/c7cp06133a
Abstract: Density functional theory calculations are performed to investigate the gas sensing properties (NO, NO2, NH3 and N2O) of pure and doped (B@ N@ and B-N@) stanene. Dispersion corrected (DFT-D3) density functional calculations show that doping improves the interaction between stanene and gas molecules. The extent of interaction between the system and gas molecules is further studied through charge density difference (CDD), electrostatic potential (ESP) and Bader charge analysis. The electronic properties of pure stanene + gases are studied with and without the effect of spin-orbit coupling. Stanene + gas systems show the Rashba-type of spin-splitting under spin-orbit coupling (SOC), which is very promising for spintronic applications. Interestingly, the doped systems (B@-, N@-, and B-N@stanene) show higher selectivity and sensitivity toward gas molecules compared to pure stanene. Therefore, the B@-, N@-, and B-N@stanene systems are promising for semiconductor based gas sensors. © the Owner Societies.
URI: https://doi.org/10.1039/c7cp06133a
https://dspace.iiti.ac.in/handle/123456789/9137
ISSN: 1463-9076
Type of Material: Journal Article
Appears in Collections:Department of Chemistry

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