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Complex interplay of interatomic bonding in a multi-component pyrophosphate crystal: K(2)Mg (H(2)P(2)O(7))(2)·2H(2)O

The electronic structure and interatomic bonding of pyrophosphate crystal K(2)Mg (H(2)P(2)O(7))(2)·2H(2)O are investigated for the first time showing complex interplay of different types of bindings. The existing structure from single-crystal X-ray diffraction is not sufficiently refined, resulting...

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Autores principales: Adhikari, Puja, Khaoulaf, Redouane, Ez-Zahraouy, Hamid, Ching, Wai-Yim
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society Publishing 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5750006/
https://www.ncbi.nlm.nih.gov/pubmed/29308239
http://dx.doi.org/10.1098/rsos.170982
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author Adhikari, Puja
Khaoulaf, Redouane
Ez-Zahraouy, Hamid
Ching, Wai-Yim
author_facet Adhikari, Puja
Khaoulaf, Redouane
Ez-Zahraouy, Hamid
Ching, Wai-Yim
author_sort Adhikari, Puja
collection PubMed
description The electronic structure and interatomic bonding of pyrophosphate crystal K(2)Mg (H(2)P(2)O(7))(2)·2H(2)O are investigated for the first time showing complex interplay of different types of bindings. The existing structure from single-crystal X-ray diffraction is not sufficiently refined, resulting in unrealistic short O─H bonds which is rectified by high-precision density functional theory (DFT) calculation. K(2)Mg (H(2)P(2)O(7))(2)·2H(2)O has a direct gap of 5.22 eV and a small electron effective mass of 0.14 m(e). Detailed bond analysis between every pair of atoms reveals the complexity of various covalent, ionic, hydrogen bonding and bridging bonding and their sensitive dependence on structural differences. The K--O bonds are much weaker than Mg--O bonds and contributions from the hydrogen bonds are non-negligible. Quantitative analysis of internal cohesion in terms of total bond order density and partial bond order density divulges the relative importance of different types of bonding. The calculated optical absorptions show multiple peaks and a sharp Plasmon peak at 23 eV and a refractive index of 1.44. The elastic and mechanical properties show features unique to this low-symmetry crystal. Phonon calculation gives vibrational frequencies in agreement with reported Raman spectrum. These results provide new insights indicating that acidic pyrophosphates could have a variety of unrealized applications in advanced technology.
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spelling pubmed-57500062018-01-07 Complex interplay of interatomic bonding in a multi-component pyrophosphate crystal: K(2)Mg (H(2)P(2)O(7))(2)·2H(2)O Adhikari, Puja Khaoulaf, Redouane Ez-Zahraouy, Hamid Ching, Wai-Yim R Soc Open Sci Chemistry The electronic structure and interatomic bonding of pyrophosphate crystal K(2)Mg (H(2)P(2)O(7))(2)·2H(2)O are investigated for the first time showing complex interplay of different types of bindings. The existing structure from single-crystal X-ray diffraction is not sufficiently refined, resulting in unrealistic short O─H bonds which is rectified by high-precision density functional theory (DFT) calculation. K(2)Mg (H(2)P(2)O(7))(2)·2H(2)O has a direct gap of 5.22 eV and a small electron effective mass of 0.14 m(e). Detailed bond analysis between every pair of atoms reveals the complexity of various covalent, ionic, hydrogen bonding and bridging bonding and their sensitive dependence on structural differences. The K--O bonds are much weaker than Mg--O bonds and contributions from the hydrogen bonds are non-negligible. Quantitative analysis of internal cohesion in terms of total bond order density and partial bond order density divulges the relative importance of different types of bonding. The calculated optical absorptions show multiple peaks and a sharp Plasmon peak at 23 eV and a refractive index of 1.44. The elastic and mechanical properties show features unique to this low-symmetry crystal. Phonon calculation gives vibrational frequencies in agreement with reported Raman spectrum. These results provide new insights indicating that acidic pyrophosphates could have a variety of unrealized applications in advanced technology. The Royal Society Publishing 2017-12-06 /pmc/articles/PMC5750006/ /pubmed/29308239 http://dx.doi.org/10.1098/rsos.170982 Text en © 2017 The Authors. http://creativecommons.org/licenses/by/4.0/ Published by the Royal Society under the terms of the Creative Commons Attribution License http://creativecommons.org/licenses/by/4.0/, which permits unrestricted use, provided the original author and source are credited.
spellingShingle Chemistry
Adhikari, Puja
Khaoulaf, Redouane
Ez-Zahraouy, Hamid
Ching, Wai-Yim
Complex interplay of interatomic bonding in a multi-component pyrophosphate crystal: K(2)Mg (H(2)P(2)O(7))(2)·2H(2)O
title Complex interplay of interatomic bonding in a multi-component pyrophosphate crystal: K(2)Mg (H(2)P(2)O(7))(2)·2H(2)O
title_full Complex interplay of interatomic bonding in a multi-component pyrophosphate crystal: K(2)Mg (H(2)P(2)O(7))(2)·2H(2)O
title_fullStr Complex interplay of interatomic bonding in a multi-component pyrophosphate crystal: K(2)Mg (H(2)P(2)O(7))(2)·2H(2)O
title_full_unstemmed Complex interplay of interatomic bonding in a multi-component pyrophosphate crystal: K(2)Mg (H(2)P(2)O(7))(2)·2H(2)O
title_short Complex interplay of interatomic bonding in a multi-component pyrophosphate crystal: K(2)Mg (H(2)P(2)O(7))(2)·2H(2)O
title_sort complex interplay of interatomic bonding in a multi-component pyrophosphate crystal: k(2)mg (h(2)p(2)o(7))(2)·2h(2)o
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5750006/
https://www.ncbi.nlm.nih.gov/pubmed/29308239
http://dx.doi.org/10.1098/rsos.170982
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