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Metal–Organic Framework [Ag <sub>24</sub> (trz) <sub>18</sub> ] <sup>6+</sup> as a Nanocarrier Agent for Ibuprofen Drug: A <scp>DFT</scp> Study

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Authors: Juliana Cirino dos Santos, Osmair Vital de Oliveira, Antônio Francisco Cruz Arapiraca, José Divino dos Santos

Year

2026

Paper ID

75997

Status

Peer-reviewed

Abstract Read

~2 min

Abstract Words

154

Citations

N/A

Abstract

ABSTRACT This study employed density functional theory to investigate the metal–organic framework [Ag 24 (trz) 18 ] 6+ as a potential nanocarrier for ibuprofen (IBF), a nonsteroidal anti‐inflammatory drug. Encapsulation occurs through a physical process characterized by a favorable interaction energy of −62.37 kcal/mol, while preserving the structure of [Ag 24 (trz) 18 ] 6+ . Reactivity parameters indicate that both the isolated [Ag 24 (trz) 18 ] 6+ and the IBF@[Ag 24 (trz) 18 ] 6+ complex are chemically and kinetically stable. The LUMO energy suggests that [Ag 24 (trz) 18 ] 6+ prevents IBF from accepting electrons during chemical reactions. The IBF encapsulated within [Ag 24 (trz) 18 ] 6+ transfers part of its charge to the nanocage, maintaining its cavity partially in a neutral state. Additionally, quantum theory of atoms in molecules (QTAIM) and non‐covalent interaction (NCI) analyses indicate that the encapsulation is a physical process driven by van der Waals forces. Overall, our study suggests that the [Ag 24 (trz) 18 ] 6+ nanocage is a promising candidate for use as a nanocarrier for IBF.

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  • ABSTRACT This study employed density functional theory to investigate the metal–organic framework [Ag 24 (trz) 18 ] 6+ as a potential nanocarrier for ibuprofen (IBF), a...

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