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Single crystal structure, vibrational spectroscopy, gas sorption and antimicrobial properties of a new inorganic acidic diphosphates material (NH(4))(2)Mg(H(2)P(2)O(7))(2)•2H(2)O

We report on the successful synthesis of diammonium magnesium dihydrogendiphosphate (V) dihydrate compound (NH(4))(2)Mg(H(2)P(2)O(7))(2)•2H(2)O using a wet chemical route. Single crystal X-ray diffraction analysis and micro Raman spectroscopy are employed to characterize the compound. We demonstrate...

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Autores principales: Essehli, Rachid, Sabri, Souhir, El-Mellouhi, Fedwa, Aïssa, Brahim, Ben Yahia, Hamdi, Altamash, Tausif, Khraisheh, Majeda, Amhamed, Abdulkarem, El Bali, Brahim
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7264148/
https://www.ncbi.nlm.nih.gov/pubmed/32483192
http://dx.doi.org/10.1038/s41598-020-65718-2
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author Essehli, Rachid
Sabri, Souhir
El-Mellouhi, Fedwa
Aïssa, Brahim
Ben Yahia, Hamdi
Altamash, Tausif
Khraisheh, Majeda
Amhamed, Abdulkarem
El Bali, Brahim
author_facet Essehli, Rachid
Sabri, Souhir
El-Mellouhi, Fedwa
Aïssa, Brahim
Ben Yahia, Hamdi
Altamash, Tausif
Khraisheh, Majeda
Amhamed, Abdulkarem
El Bali, Brahim
author_sort Essehli, Rachid
collection PubMed
description We report on the successful synthesis of diammonium magnesium dihydrogendiphosphate (V) dihydrate compound (NH(4))(2)Mg(H(2)P(2)O(7))(2)•2H(2)O using a wet chemical route. Single crystal X-ray diffraction analysis and micro Raman spectroscopy are employed to characterize the compound. We demonstrate, using a multidisciplinary approach, that this compound is ideal for carbon dioxide (CO(2)) capture in addition to other anthropogenic gasses. We show here -from both an experimental as well as from a density functional theory (DFT) calculations routes- the potential for adopting this compound into domestic air-conditioning units (ACUs). From these experiments, the resistance to bacterial growth is also investigated, which is critical for the adoption of this compound in ACUs. Our  compound exhibits a higher methane (CH(4)) sorptivity as compared to CO(2) at 25 °C and 45 °C under pressures up to 50 bars. Furthermore, DFT electronic structure calculations are used to compute the main structural and electronic properties of the compound, taking into consideration the characteristics of the identified pores as a function of the progressive CO(2) vs. CH(4) loadings. Finally, the antibacterial assay reveals a strong antibacterial activity against the tested Gram-positive and Gram-negative bacteria, with a large zone of inhibition against the tested E. Coli, S. Aureus and K. Pneumonia.
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spelling pubmed-72641482020-06-05 Single crystal structure, vibrational spectroscopy, gas sorption and antimicrobial properties of a new inorganic acidic diphosphates material (NH(4))(2)Mg(H(2)P(2)O(7))(2)•2H(2)O Essehli, Rachid Sabri, Souhir El-Mellouhi, Fedwa Aïssa, Brahim Ben Yahia, Hamdi Altamash, Tausif Khraisheh, Majeda Amhamed, Abdulkarem El Bali, Brahim Sci Rep Article We report on the successful synthesis of diammonium magnesium dihydrogendiphosphate (V) dihydrate compound (NH(4))(2)Mg(H(2)P(2)O(7))(2)•2H(2)O using a wet chemical route. Single crystal X-ray diffraction analysis and micro Raman spectroscopy are employed to characterize the compound. We demonstrate, using a multidisciplinary approach, that this compound is ideal for carbon dioxide (CO(2)) capture in addition to other anthropogenic gasses. We show here -from both an experimental as well as from a density functional theory (DFT) calculations routes- the potential for adopting this compound into domestic air-conditioning units (ACUs). From these experiments, the resistance to bacterial growth is also investigated, which is critical for the adoption of this compound in ACUs. Our  compound exhibits a higher methane (CH(4)) sorptivity as compared to CO(2) at 25 °C and 45 °C under pressures up to 50 bars. Furthermore, DFT electronic structure calculations are used to compute the main structural and electronic properties of the compound, taking into consideration the characteristics of the identified pores as a function of the progressive CO(2) vs. CH(4) loadings. Finally, the antibacterial assay reveals a strong antibacterial activity against the tested Gram-positive and Gram-negative bacteria, with a large zone of inhibition against the tested E. Coli, S. Aureus and K. Pneumonia. Nature Publishing Group UK 2020-06-01 /pmc/articles/PMC7264148/ /pubmed/32483192 http://dx.doi.org/10.1038/s41598-020-65718-2 Text en © The Author(s) 2020 Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Essehli, Rachid
Sabri, Souhir
El-Mellouhi, Fedwa
Aïssa, Brahim
Ben Yahia, Hamdi
Altamash, Tausif
Khraisheh, Majeda
Amhamed, Abdulkarem
El Bali, Brahim
Single crystal structure, vibrational spectroscopy, gas sorption and antimicrobial properties of a new inorganic acidic diphosphates material (NH(4))(2)Mg(H(2)P(2)O(7))(2)•2H(2)O
title Single crystal structure, vibrational spectroscopy, gas sorption and antimicrobial properties of a new inorganic acidic diphosphates material (NH(4))(2)Mg(H(2)P(2)O(7))(2)•2H(2)O
title_full Single crystal structure, vibrational spectroscopy, gas sorption and antimicrobial properties of a new inorganic acidic diphosphates material (NH(4))(2)Mg(H(2)P(2)O(7))(2)•2H(2)O
title_fullStr Single crystal structure, vibrational spectroscopy, gas sorption and antimicrobial properties of a new inorganic acidic diphosphates material (NH(4))(2)Mg(H(2)P(2)O(7))(2)•2H(2)O
title_full_unstemmed Single crystal structure, vibrational spectroscopy, gas sorption and antimicrobial properties of a new inorganic acidic diphosphates material (NH(4))(2)Mg(H(2)P(2)O(7))(2)•2H(2)O
title_short Single crystal structure, vibrational spectroscopy, gas sorption and antimicrobial properties of a new inorganic acidic diphosphates material (NH(4))(2)Mg(H(2)P(2)O(7))(2)•2H(2)O
title_sort single crystal structure, vibrational spectroscopy, gas sorption and antimicrobial properties of a new inorganic acidic diphosphates material (nh(4))(2)mg(h(2)p(2)o(7))(2)•2h(2)o
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7264148/
https://www.ncbi.nlm.nih.gov/pubmed/32483192
http://dx.doi.org/10.1038/s41598-020-65718-2
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