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January 24, 2026Chemistry - A European Journal1 citationsOpen Access

Structural Aspects of Lithium‐Ion Conduction in the Phosphidotitanate Li 8 TiP 4 and Its Comparison With Li 7+5 x Ta 1− x P 4 and Li 8− x Ti 1− x Ta x P 4

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DMDavid A. MullerUniversité Paris-SudTKTobias KutschMax Planck Institute for Medical ResearchSZSabine ZeitzTechnical University of Munich

Key Points

  • The central aim is to elucidate the structure and ionic conduction properties of Li8TiP4 and compare them with other lithium phosphates.
  • Synthesis of phase pure Li8TiP4 and structural analysis using X-ray diffraction
  • Characterization through solid state 6Li and 31P NMR spectroscopy
  • Density functional theory (DFT) calculations for band gap assessment
  • Potentiostatic impedance spectroscopy for measuring ionic conductivity
  • Single crystal structure determination of quaternary Ta-containing phase
  • Li8TiP4 crystallizes in tetragonal space group P42mc with specific lattice parameters
  • An ionic conductivity of (4.3 ± 0.6) × 10−6 S·cm−1 at 298 K was measured
  • DFT calculations showed a band gap of 2.5 eV, correlating well with experimental Raman spectra
  • Key structural differences and lithium mobility pathways were identified compared to Li7+5xTaxP4 and Li8−xTi1−xTaxP4.

Abstract

ABSTRACT The chemical system Li/Ti/P has previously been subject to intensive investigation. However, reliable structural data for the reported phases have remained elusive. Motivated by the growing interest in phosphorus‐based lithium‐ion conductors, we have reinvestigated the synthesis, crystal structure, and physical properties of Li 8 TiP 4 . Phase pure Li 8 TiP 4 was obtained, which crystallizes in the tetragonal space group P 4 2 mc (no. 105) with a = 8.37581(2) Å and c = 5.90489(2) Å. According to a structure determination from X‐ray diffraction powder data, Li 8 TiP 4 is closely related to known Li 8 Tt P 4 with Tt = Si, Ge, and Sn, but adapts a different structure type. Basic structural findings are confirmed by solid state 6 Li and 31 P NMR spectroscopy. DFT calculations reveal a band gap of 2.5 eV and a good correlation between theoretical and experimental Raman spectra. From potentiostatic impedance spectroscopy an ion conductivity of (4.3 ± 0.6) × 10 −6 S∙cm −1 at 298 K was found. In addition to the investigation of ternary Li 8 TiP 4 , an isotypic quaternary Ta‐containing phase is observed and studied by single crystal structure determination. Special emphasis in this study is placed on the role of Li occupancy in the voids of the cubic close‐packed (ccp) P atom arrangement and its impact on the ionic conductivity, in comparison to the known compounds Li 7+5 x Ta x P 4 and Li 8− x Ti 1− x Ta x P 4 and traced back to the difference in crystal symmetry. Possible diffusion pathways of the Li + ions were approached by BVSE calculations.

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Cite This Study

Muller et al. (2026) studied this question.

synapsesocial.com/papers/69746187bb9d90c67120b56fhttps://doi.org/10.1002/chem.202503124
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