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Adsorption of  a thione derivative On Carbon, AlN, and BN Nanotubes: A Detailed DFT and MD Investigation

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Abstract The performance of nanotubes (NT) of carbon (CC), aluminum-nitrogen (AlN), and boron-nitrogen (BN) as a sensor and nanocarrier for mercaptopurine (MCP) was investigated by means of a theoretical approach. The calculated negative values of adsorption energy showed the interaction and adsorption of MCP. HOMO and LUMO distributions were only found on the NT counter portion of the drug-nanotube not on MCP for AlN-NT and BN-NT while HOMO is over MCP and LUMO are over NT for CC-NT. The polarizability of MCP-NTs is greater than that of MCP. Raman wavenumbers of MCP are enhanced in NTs and hence NTs can act as a sensor for the detection of MCP. Solvent dependency on adsorption behavior is also presented in the manuscript, where we found that the AlN nanotube showed exceptionally high free energy of adsorption over other nanotubes in all solvent mediums. Solvation-free energies were also reported. Noncovalent interaction scattered plot also showed significant intermolecular interaction between AlN nanotubes and the mercaptopurine when compared to other nanotubes under study. To find the antiviral activity of MCP and MCP-NTs against antiviral activities, docking and molecular dynamics simulations were performed with 1HMP PDB. Recovery times show that MCP desorption occurs quickly. The MD simulations and docking results show that BN and CC-NTs with MCP show good activity as drug carriers.
Title: Adsorption of  a thione derivative On Carbon, AlN, and BN Nanotubes: A Detailed DFT and MD Investigation
Description:
Abstract The performance of nanotubes (NT) of carbon (CC), aluminum-nitrogen (AlN), and boron-nitrogen (BN) as a sensor and nanocarrier for mercaptopurine (MCP) was investigated by means of a theoretical approach.
The calculated negative values of adsorption energy showed the interaction and adsorption of MCP.
HOMO and LUMO distributions were only found on the NT counter portion of the drug-nanotube not on MCP for AlN-NT and BN-NT while HOMO is over MCP and LUMO are over NT for CC-NT.
The polarizability of MCP-NTs is greater than that of MCP.
Raman wavenumbers of MCP are enhanced in NTs and hence NTs can act as a sensor for the detection of MCP.
Solvent dependency on adsorption behavior is also presented in the manuscript, where we found that the AlN nanotube showed exceptionally high free energy of adsorption over other nanotubes in all solvent mediums.
Solvation-free energies were also reported.
Noncovalent interaction scattered plot also showed significant intermolecular interaction between AlN nanotubes and the mercaptopurine when compared to other nanotubes under study.
To find the antiviral activity of MCP and MCP-NTs against antiviral activities, docking and molecular dynamics simulations were performed with 1HMP PDB.
Recovery times show that MCP desorption occurs quickly.
The MD simulations and docking results show that BN and CC-NTs with MCP show good activity as drug carriers.

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