Cargando…

Supertetrahedral polyanionic network in the first lithium phosphidoindate Li(3)InP(2) – structural similarity to Li(2)SiP(2) and Li(2)GeP(2) and dissimilarity to Li(3)AlP(2) and Li(3)GaP(2)

Phosphide-based materials have been investigated as promising candidates for solid electrolytes, among which the recently reported Li(9)AlP(4) displays an ionic conductivity of 3 mS cm(−1). While the phases Li–Al–P and Li–Ga–P have already been investigated, no ternary indium-based phosphide has bee...

Descripción completa

Detalles Bibliográficos
Autores principales: Restle, Tassilo M. F., Deringer, Volker L., Meyer, Jan, Raudaschl-Sieber, Gabriele, Fässler, Thomas F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8179136/
https://www.ncbi.nlm.nih.gov/pubmed/34163890
http://dx.doi.org/10.1039/d0sc05851c
_version_ 1783703721016819712
author Restle, Tassilo M. F.
Deringer, Volker L.
Meyer, Jan
Raudaschl-Sieber, Gabriele
Fässler, Thomas F.
author_facet Restle, Tassilo M. F.
Deringer, Volker L.
Meyer, Jan
Raudaschl-Sieber, Gabriele
Fässler, Thomas F.
author_sort Restle, Tassilo M. F.
collection PubMed
description Phosphide-based materials have been investigated as promising candidates for solid electrolytes, among which the recently reported Li(9)AlP(4) displays an ionic conductivity of 3 mS cm(−1). While the phases Li–Al–P and Li–Ga–P have already been investigated, no ternary indium-based phosphide has been reported up to now. Here, we describe the synthesis and characterization of the first lithium phosphidoindate Li(3)InP(2), which is easily accessible via ball milling of the elements and subsequent annealing. Li(3)InP(2) crystallizes in the tetragonal space group I4(1)/acd with lattice parameters of a = 12.0007(2) and c = 23.917(5) Å, featuring a supertetrahedral polyanionic framework of interconnected InP(4) tetrahedra. All lithium atoms occupy tetrahedral voids with no partial occupation. Remarkably, Li(3)InP(2) is not isotypic to the previously reported homologues Li(3)AlP(2) and Li(3)GaP(2), which both crystallize in the space group Cmce and feature 2D layers of connected tetrahedra but no supertetrahedral framework. DFT computations support the observed stability of Li(3)InP(2). A detailed geometrical analysis leads to a more general insight into the structural factors governing lithium ion mobility in phosphide-based materials: in the non-ionic conducting Li(3)InP(2) the Li ions exclusively occupy tetrahedral voids in the distorted close packing of P atoms, whereas partially filled octahedral voids are present in the moderate ionic conductors Li(2)SiP(2) and Li(2)GeP(2).
format Online
Article
Text
id pubmed-8179136
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-81791362021-06-22 Supertetrahedral polyanionic network in the first lithium phosphidoindate Li(3)InP(2) – structural similarity to Li(2)SiP(2) and Li(2)GeP(2) and dissimilarity to Li(3)AlP(2) and Li(3)GaP(2) Restle, Tassilo M. F. Deringer, Volker L. Meyer, Jan Raudaschl-Sieber, Gabriele Fässler, Thomas F. Chem Sci Chemistry Phosphide-based materials have been investigated as promising candidates for solid electrolytes, among which the recently reported Li(9)AlP(4) displays an ionic conductivity of 3 mS cm(−1). While the phases Li–Al–P and Li–Ga–P have already been investigated, no ternary indium-based phosphide has been reported up to now. Here, we describe the synthesis and characterization of the first lithium phosphidoindate Li(3)InP(2), which is easily accessible via ball milling of the elements and subsequent annealing. Li(3)InP(2) crystallizes in the tetragonal space group I4(1)/acd with lattice parameters of a = 12.0007(2) and c = 23.917(5) Å, featuring a supertetrahedral polyanionic framework of interconnected InP(4) tetrahedra. All lithium atoms occupy tetrahedral voids with no partial occupation. Remarkably, Li(3)InP(2) is not isotypic to the previously reported homologues Li(3)AlP(2) and Li(3)GaP(2), which both crystallize in the space group Cmce and feature 2D layers of connected tetrahedra but no supertetrahedral framework. DFT computations support the observed stability of Li(3)InP(2). A detailed geometrical analysis leads to a more general insight into the structural factors governing lithium ion mobility in phosphide-based materials: in the non-ionic conducting Li(3)InP(2) the Li ions exclusively occupy tetrahedral voids in the distorted close packing of P atoms, whereas partially filled octahedral voids are present in the moderate ionic conductors Li(2)SiP(2) and Li(2)GeP(2). The Royal Society of Chemistry 2020-11-27 /pmc/articles/PMC8179136/ /pubmed/34163890 http://dx.doi.org/10.1039/d0sc05851c Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Restle, Tassilo M. F.
Deringer, Volker L.
Meyer, Jan
Raudaschl-Sieber, Gabriele
Fässler, Thomas F.
Supertetrahedral polyanionic network in the first lithium phosphidoindate Li(3)InP(2) – structural similarity to Li(2)SiP(2) and Li(2)GeP(2) and dissimilarity to Li(3)AlP(2) and Li(3)GaP(2)
title Supertetrahedral polyanionic network in the first lithium phosphidoindate Li(3)InP(2) – structural similarity to Li(2)SiP(2) and Li(2)GeP(2) and dissimilarity to Li(3)AlP(2) and Li(3)GaP(2)
title_full Supertetrahedral polyanionic network in the first lithium phosphidoindate Li(3)InP(2) – structural similarity to Li(2)SiP(2) and Li(2)GeP(2) and dissimilarity to Li(3)AlP(2) and Li(3)GaP(2)
title_fullStr Supertetrahedral polyanionic network in the first lithium phosphidoindate Li(3)InP(2) – structural similarity to Li(2)SiP(2) and Li(2)GeP(2) and dissimilarity to Li(3)AlP(2) and Li(3)GaP(2)
title_full_unstemmed Supertetrahedral polyanionic network in the first lithium phosphidoindate Li(3)InP(2) – structural similarity to Li(2)SiP(2) and Li(2)GeP(2) and dissimilarity to Li(3)AlP(2) and Li(3)GaP(2)
title_short Supertetrahedral polyanionic network in the first lithium phosphidoindate Li(3)InP(2) – structural similarity to Li(2)SiP(2) and Li(2)GeP(2) and dissimilarity to Li(3)AlP(2) and Li(3)GaP(2)
title_sort supertetrahedral polyanionic network in the first lithium phosphidoindate li(3)inp(2) – structural similarity to li(2)sip(2) and li(2)gep(2) and dissimilarity to li(3)alp(2) and li(3)gap(2)
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8179136/
https://www.ncbi.nlm.nih.gov/pubmed/34163890
http://dx.doi.org/10.1039/d0sc05851c
work_keys_str_mv AT restletassilomf supertetrahedralpolyanionicnetworkinthefirstlithiumphosphidoindateli3inp2structuralsimilaritytoli2sip2andli2gep2anddissimilaritytoli3alp2andli3gap2
AT deringervolkerl supertetrahedralpolyanionicnetworkinthefirstlithiumphosphidoindateli3inp2structuralsimilaritytoli2sip2andli2gep2anddissimilaritytoli3alp2andli3gap2
AT meyerjan supertetrahedralpolyanionicnetworkinthefirstlithiumphosphidoindateli3inp2structuralsimilaritytoli2sip2andli2gep2anddissimilaritytoli3alp2andli3gap2
AT raudaschlsiebergabriele supertetrahedralpolyanionicnetworkinthefirstlithiumphosphidoindateli3inp2structuralsimilaritytoli2sip2andli2gep2anddissimilaritytoli3alp2andli3gap2
AT fasslerthomasf supertetrahedralpolyanionicnetworkinthefirstlithiumphosphidoindateli3inp2structuralsimilaritytoli2sip2andli2gep2anddissimilaritytoli3alp2andli3gap2