Cargando…

Post synthetically modified IRMOF-3 for efficient recovery and selective sensing of U(vi) from aqueous medium

A simple and efficient route to develop various novel functionalized MOF materials for rapid and excellent recovery of U(vi) from aqueous medium, along with selective sensing has been demonstrated in the present study. In this connection, a set of four distinct post synthetically modified (PSM) iso-...

Descripción completa

Detalles Bibliográficos
Autores principales: Venkata Sravani, V., Tripathi, Sarita, Sreenivasulu, B., Kumar, Satendra, Maji, S., Brahmmananda Rao, C. V. S., Suresh, A., Sivaraman, N.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9037992/
https://www.ncbi.nlm.nih.gov/pubmed/35480724
http://dx.doi.org/10.1039/d1ra02971a
_version_ 1784693838422474752
author Venkata Sravani, V.
Tripathi, Sarita
Sreenivasulu, B.
Kumar, Satendra
Maji, S.
Brahmmananda Rao, C. V. S.
Suresh, A.
Sivaraman, N.
author_facet Venkata Sravani, V.
Tripathi, Sarita
Sreenivasulu, B.
Kumar, Satendra
Maji, S.
Brahmmananda Rao, C. V. S.
Suresh, A.
Sivaraman, N.
author_sort Venkata Sravani, V.
collection PubMed
description A simple and efficient route to develop various novel functionalized MOF materials for rapid and excellent recovery of U(vi) from aqueous medium, along with selective sensing has been demonstrated in the present study. In this connection, a set of four distinct post synthetically modified (PSM) iso-reticular metal organic frameworks were synthesized from IRMOF-3 namely, IRMOF-PC (2-pyridine carboxaldehyde), IRMOF-GA (glutaric anhydride), IRMOF-SMA (sulfamic acid), and IRMOF-DPC (diphenylphosphonic chloride) for the recovery and sensing of U(vi) from aqueous medium. The MOFs were characterized by Fourier transform infrared spectroscopy (FTIR), powder XRD, BET surface area analysis, thermogravimetric analysis (TGA), NMR ((13)C, (1)H and (31)P), Scanning Electron Microscopy (SEM), and energy dispersive X-ray spectroscopy (EDX). Among all MOFs, post synthetically modified IRMOF-SMA showed enhanced thermal stability of about 420 °C. The MOFs were investigated for U(vi) sorption studies using a batch technique. All the MOFs exhibit excellent sorption capacity towards U(vi) (>90%) and maximum uptake was observed at pH 6. Sorption capacity of MOFs have the following order; IRMOF-3-DPC (300 mg U g(−1)) > IRMOF-SMA (292 mg U g(−1)) > IRMOF-PC (289 mg U g(−1)) > IRMOF-GA (280 mg U g(−1)) > IRMOF-3 (273 mg U g(−1)). IRMOF-DPC shows rapid sorption of uranium within 5 min with excellent uptake of U(vi) (>99%). The desorption of U(vi) was examined with different eluents and 0.01 M HNO(3) was found to be most effective. The fluorescence sensing studies of U(vi) via IRMOF-3 and its PSM MOFs revealed high sensitivity and selectivity towards U(vi) over other competing rare earth metal ions (La(3+), Ce(4+), Sm(3+), Nd(3+), Gd(3+), and Eu(3+)), wherein IRMOF-GA displayed an impressive detection limit of 0.36 mg L(−1) for U(vi).
format Online
Article
Text
id pubmed-9037992
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-90379922022-04-26 Post synthetically modified IRMOF-3 for efficient recovery and selective sensing of U(vi) from aqueous medium Venkata Sravani, V. Tripathi, Sarita Sreenivasulu, B. Kumar, Satendra Maji, S. Brahmmananda Rao, C. V. S. Suresh, A. Sivaraman, N. RSC Adv Chemistry A simple and efficient route to develop various novel functionalized MOF materials for rapid and excellent recovery of U(vi) from aqueous medium, along with selective sensing has been demonstrated in the present study. In this connection, a set of four distinct post synthetically modified (PSM) iso-reticular metal organic frameworks were synthesized from IRMOF-3 namely, IRMOF-PC (2-pyridine carboxaldehyde), IRMOF-GA (glutaric anhydride), IRMOF-SMA (sulfamic acid), and IRMOF-DPC (diphenylphosphonic chloride) for the recovery and sensing of U(vi) from aqueous medium. The MOFs were characterized by Fourier transform infrared spectroscopy (FTIR), powder XRD, BET surface area analysis, thermogravimetric analysis (TGA), NMR ((13)C, (1)H and (31)P), Scanning Electron Microscopy (SEM), and energy dispersive X-ray spectroscopy (EDX). Among all MOFs, post synthetically modified IRMOF-SMA showed enhanced thermal stability of about 420 °C. The MOFs were investigated for U(vi) sorption studies using a batch technique. All the MOFs exhibit excellent sorption capacity towards U(vi) (>90%) and maximum uptake was observed at pH 6. Sorption capacity of MOFs have the following order; IRMOF-3-DPC (300 mg U g(−1)) > IRMOF-SMA (292 mg U g(−1)) > IRMOF-PC (289 mg U g(−1)) > IRMOF-GA (280 mg U g(−1)) > IRMOF-3 (273 mg U g(−1)). IRMOF-DPC shows rapid sorption of uranium within 5 min with excellent uptake of U(vi) (>99%). The desorption of U(vi) was examined with different eluents and 0.01 M HNO(3) was found to be most effective. The fluorescence sensing studies of U(vi) via IRMOF-3 and its PSM MOFs revealed high sensitivity and selectivity towards U(vi) over other competing rare earth metal ions (La(3+), Ce(4+), Sm(3+), Nd(3+), Gd(3+), and Eu(3+)), wherein IRMOF-GA displayed an impressive detection limit of 0.36 mg L(−1) for U(vi). The Royal Society of Chemistry 2021-08-19 /pmc/articles/PMC9037992/ /pubmed/35480724 http://dx.doi.org/10.1039/d1ra02971a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Venkata Sravani, V.
Tripathi, Sarita
Sreenivasulu, B.
Kumar, Satendra
Maji, S.
Brahmmananda Rao, C. V. S.
Suresh, A.
Sivaraman, N.
Post synthetically modified IRMOF-3 for efficient recovery and selective sensing of U(vi) from aqueous medium
title Post synthetically modified IRMOF-3 for efficient recovery and selective sensing of U(vi) from aqueous medium
title_full Post synthetically modified IRMOF-3 for efficient recovery and selective sensing of U(vi) from aqueous medium
title_fullStr Post synthetically modified IRMOF-3 for efficient recovery and selective sensing of U(vi) from aqueous medium
title_full_unstemmed Post synthetically modified IRMOF-3 for efficient recovery and selective sensing of U(vi) from aqueous medium
title_short Post synthetically modified IRMOF-3 for efficient recovery and selective sensing of U(vi) from aqueous medium
title_sort post synthetically modified irmof-3 for efficient recovery and selective sensing of u(vi) from aqueous medium
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9037992/
https://www.ncbi.nlm.nih.gov/pubmed/35480724
http://dx.doi.org/10.1039/d1ra02971a
work_keys_str_mv AT venkatasravaniv postsyntheticallymodifiedirmof3forefficientrecoveryandselectivesensingofuvifromaqueousmedium
AT tripathisarita postsyntheticallymodifiedirmof3forefficientrecoveryandselectivesensingofuvifromaqueousmedium
AT sreenivasulub postsyntheticallymodifiedirmof3forefficientrecoveryandselectivesensingofuvifromaqueousmedium
AT kumarsatendra postsyntheticallymodifiedirmof3forefficientrecoveryandselectivesensingofuvifromaqueousmedium
AT majis postsyntheticallymodifiedirmof3forefficientrecoveryandselectivesensingofuvifromaqueousmedium
AT brahmmanandaraocvs postsyntheticallymodifiedirmof3forefficientrecoveryandselectivesensingofuvifromaqueousmedium
AT suresha postsyntheticallymodifiedirmof3forefficientrecoveryandselectivesensingofuvifromaqueousmedium
AT sivaramann postsyntheticallymodifiedirmof3forefficientrecoveryandselectivesensingofuvifromaqueousmedium