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Potential of Zn Doped Silicon and Carbon Nanostructures for Triazavirin Delivery as Effective Drug of Coronavirus Disease.

Authors :
Ali, Eyhab
Almulla, Ausama A.
Batoo, Khalid Mujasam
Hussain, Sajjad
Ahmed, Hanan Hassan
Hamood, Sarah A.
Al-Abdeen, Salah Hassan Zain
Ramadan, Montather F.
Musawi, Sada Ghalib Al-
Zabibah, Rahman S.
Alsalamy, Ali
Source :
SILICON (1876990X); Feb2024, Vol. 16 Issue 4, p1433-1439, 7p
Publication Year :
2024

Abstract

In this study, the performances of Zn-doped nanotubes and Zn-doped nanocages to delivery of Triazavirin as drugs of Coronavirus disease is examined. The ΔG<subscript>adsorption</subscript> and recovery time for complexes of Triazavirin with Zn-C<subscript>48</subscript>, Zn-Si<subscript>48</subscript>, Zn-CNT (5, 0) and Zn-SiNT (5, 0) are calculated by theoretical methods. The ΔG<subscript>adsorption</subscript> of complexes of b, d, f, h including the Triazavirin-Zn-C<subscript>48</subscript>, Triazavirin-Zn-Si<subscript>48</subscript>, Triazavirin-Zn-CNT (5, 0) and Triazavirin-Zn-SiNT (5, 0) in water are -3.46, -3.61, -4.28 and -4.40 eV, respectively. The τ of complexes of b, d, f, h including the Triazavirin-Zn-C<subscript>48</subscript>, Triazavirin-Zn-Si<subscript>48</subscript>, Triazavirin-Zn-CNT (5, 0) and Triazavirin-Zn-SiNT (5, 0) in water are 55.16, 58.52, 62.06 and 67.07 s respectively. Finally, the Zn-SiNT (5, 0) and Zn-CNT (5, 0) have high potential to Triazavirin delivery and these nano-structures can propose to use as deliver of important drugs of Coronavirus disease. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
1876990X
Volume :
16
Issue :
4
Database :
Complementary Index
Journal :
SILICON (1876990X)
Publication Type :
Academic Journal
Accession number :
175696760
Full Text :
https://doi.org/10.1007/s12633-023-02773-0