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The First-Principles investigation of sensing and removal applications of nitrobenzene using pristine and Sc decorated B9N9 nanoring.

Authors :
Sainda, Riddhi
Chodvadiya, Darshil
Zgłobicka, Izabela
Kurzydłowski, Krzysztof J.
Jha, Prafulla K
Source :
Journal of Molecular Liquids. Sep2024, Vol. 409, pN.PAG-N.PAG. 1p.
Publication Year :
2024

Abstract

[Display omitted] • B 9 N 9 nanoring was examined as nitrobenzene (NB) sensor using DFT. • The pristine B 9 N 9 can serve as an electronic and φ-type sensor for NB molecule. • The pristine B 9 N 9 nanoring can be utilized as an effective NB sensor. • The Sc decorated B 9 N 9 nanoring can be used for NB removal from the environment. Nitrobenzene (NB), an aromatic organic compound widely used in various industries, has several environmental risks. Due to its risks, reliable sensing mechanisms are crucial. In the present work, we investigated the potential of the pristine and Sc decorated B 9 N 9 nanoring as a sensor for detection of the toxic NB molecule using density functional theory (DFT). We have analyzed the structural parameters, adsorption energy (E ad), highest occupied molecular orbital (HOMO), lowest unoccupied molecular orbital (LUMO), HOMO-LUMO gap, density of states (DOS) spectra, Mulliken charge transfer, dipole moment, IR spectra, non-covalent interactions (NCI) iso-surfaces, recovery time (τ) and work function (φ) before and after the adsorption of NB onto pristine and Sc decorated B 9 N 9 nanorings. Our analysis revealed that the NB interacted optimally with the pristine B 9 N 9 nanoring, as evidenced by changes in electronic properties and E ad value of −0.58 eV. However, the Sc decorated B 9 N 9 nanoring indicated a strong interaction with NB with E ad of −4.09 eV at a proximal distance of 2.12 Å. Furthermore, our study demonstrated that the pristine B 9 N 9 nanoring could be used as both an "electronic sensor" and "φ-type sensor". Additionally, to esteem rapid recovery for practical feasibility, we calculated τ for both the pristine and Sc decorated B 9 N 9 nanoring. The short τ of the pristine nanoring indicates its suitability as NB sensor. In contrast, the longer τ of the Sc decorated nanoring suggests its applicability for NB storage or its removal from the surroundings. Overall, our findings underscore the potential of pristine B 9 N 9 nanoring as effective NB sensor and removal. We hope that our study will assist experimentalists to develope a reliable B 9 N 9 nanoring based sensor for the detection of NB molecules. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
01677322
Volume :
409
Database :
Academic Search Index
Journal :
Journal of Molecular Liquids
Publication Type :
Academic Journal
Accession number :
179062955
Full Text :
https://doi.org/10.1016/j.molliq.2024.125389