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Formation Mechanism of beta-Li3PS4 through Decomposition of Complexes
Formation Mechanism of beta-Li3PS4 through Decomposition of Complexes

Computed structure of glassy Li3PS4 at 300 K and 1 bar generated from... |  Download Scientific Diagram
Computed structure of glassy Li3PS4 at 300 K and 1 bar generated from... | Download Scientific Diagram

Liquid-phase synthesis of Li3PS4 solid electrolyte using ethylenediamine |  SpringerLink
Liquid-phase synthesis of Li3PS4 solid electrolyte using ethylenediamine | SpringerLink

Solvent-Mediated Synthesis of Amorphous Li3PS4/Polyethylene Oxide Composite  Solid Electrolytes with High Li+ Conductivity | Chemistry of Materials
Solvent-Mediated Synthesis of Amorphous Li3PS4/Polyethylene Oxide Composite Solid Electrolytes with High Li+ Conductivity | Chemistry of Materials

Schematics of the I2-induced polymerization of Li3PS4 The reaction of... |  Download Scientific Diagram
Schematics of the I2-induced polymerization of Li3PS4 The reaction of... | Download Scientific Diagram

Impact of the Li substructure on the diffusion pathways in alpha and beta  Li3PS4: an in situ high temperature neutron diffraction study - Journal of  Materials Chemistry A (RSC Publishing)
Impact of the Li substructure on the diffusion pathways in alpha and beta Li3PS4: an in situ high temperature neutron diffraction study - Journal of Materials Chemistry A (RSC Publishing)

Li+-Ion Dynamics in β-Li3PS4 Observed by NMR: Local Hopping and Long-Range  Transport | The Journal of Physical Chemistry C
Li+-Ion Dynamics in β-Li3PS4 Observed by NMR: Local Hopping and Long-Range Transport | The Journal of Physical Chemistry C

Revisiting the ionic diffusion mechanism in Li3PS4 via the joint usage of  geometrical analysis and bond valence method - ScienceDirect
Revisiting the ionic diffusion mechanism in Li3PS4 via the joint usage of geometrical analysis and bond valence method - ScienceDirect

Formation Mechanism of β-Li3PS4 through Decomposition of Complexes |  Inorganic Chemistry
Formation Mechanism of β-Li3PS4 through Decomposition of Complexes | Inorganic Chemistry

Effect of selected dopants on conductivity and moisture stability of Li3PS4  sulfide solid electrolyte: a first-principles study - ScienceDirect
Effect of selected dopants on conductivity and moisture stability of Li3PS4 sulfide solid electrolyte: a first-principles study - ScienceDirect

Solid Electrolyte Li3PS4 (LPS) 75Li2S-25P2S5 Powder| MSE Supplies LLC
Solid Electrolyte Li3PS4 (LPS) 75Li2S-25P2S5 Powder| MSE Supplies LLC

Lithium ion conductivity in Li2S–P2S5 glasses – building units and local  structure evolution during the crystallization of superionic conductors  Li3PS4, Li7P3S11 and Li4P2S7 - Journal of Materials Chemistry A (RSC  Publishing)
Lithium ion conductivity in Li2S–P2S5 glasses – building units and local structure evolution during the crystallization of superionic conductors Li3PS4, Li7P3S11 and Li4P2S7 - Journal of Materials Chemistry A (RSC Publishing)

Nanomaterials | Free Full-Text | Computational Characterization of β- Li3PS4 Solid Electrolyte: From Bulk and Surfaces to Nanocrystals
Nanomaterials | Free Full-Text | Computational Characterization of β- Li3PS4 Solid Electrolyte: From Bulk and Surfaces to Nanocrystals

Phase Diagram of the Li4GeS4–Li3PS4 Quasi‐Binary System Containing the  Superionic Conductor Li10GeP2S12 - Hori - 2015 - Journal of the American  Ceramic Society - Wiley Online Library
Phase Diagram of the Li4GeS4–Li3PS4 Quasi‐Binary System Containing the Superionic Conductor Li10GeP2S12 - Hori - 2015 - Journal of the American Ceramic Society - Wiley Online Library

Crystal structure and phase transitions of the lithium ionic conductor  Li3PS4 - ScienceDirect
Crystal structure and phase transitions of the lithium ionic conductor Li3PS4 - ScienceDirect

Unsupervised discovery of solid-state lithium ion conductors | Nature  Communications
Unsupervised discovery of solid-state lithium ion conductors | Nature Communications

Journal Name ARTICLE Fabrication of Ultrathin Solid Electrolyte Membranes  of β- Li3PS4 Nanoflakes by Evaporation-Induced Self-A
Journal Name ARTICLE Fabrication of Ultrathin Solid Electrolyte Membranes of β- Li3PS4 Nanoflakes by Evaporation-Induced Self-A

First-principles molecular simulations of Li diffusion in solid  electrolytes Li3PS4 - ScienceDirect
First-principles molecular simulations of Li diffusion in solid electrolytes Li3PS4 - ScienceDirect

Nanomaterials | Free Full-Text | Computational Characterization of β- Li3PS4 Solid Electrolyte: From Bulk and Surfaces to Nanocrystals
Nanomaterials | Free Full-Text | Computational Characterization of β- Li3PS4 Solid Electrolyte: From Bulk and Surfaces to Nanocrystals

Amorphous versus Crystalline Li3PS4: Local Structural Changes during  Synthesis and Li Ion Mobility | The Journal of Physical Chemistry C
Amorphous versus Crystalline Li3PS4: Local Structural Changes during Synthesis and Li Ion Mobility | The Journal of Physical Chemistry C

The Hidden Side of Nanoporous β‐Li3PS4 Solid Electrolyte - Marchini - 2021  - Advanced Energy Materials - Wiley Online Library
The Hidden Side of Nanoporous β‐Li3PS4 Solid Electrolyte - Marchini - 2021 - Advanced Energy Materials - Wiley Online Library

Lithium-ion-conductive sulfide polymer electrolyte with disulfide  bond-linked PS4 tetrahedra for all-solid-state batteries | Communications  Materials
Lithium-ion-conductive sulfide polymer electrolyte with disulfide bond-linked PS4 tetrahedra for all-solid-state batteries | Communications Materials

Figure 2 from Elastic Properties, Defect Thermodynamics, Electrochemical  Window, Phase Stability, and Li(+) Mobility of Li3PS4: Insights from  First-Principles Calculations. | Semantic Scholar
Figure 2 from Elastic Properties, Defect Thermodynamics, Electrochemical Window, Phase Stability, and Li(+) Mobility of Li3PS4: Insights from First-Principles Calculations. | Semantic Scholar

Improvement of chemical stability of Li3PS4 glass electrolytes by adding  MxOy (M = Fe, Zn, and Bi) nanoparticles - Journal of Materials Chemistry A  (RSC Publishing)
Improvement of chemical stability of Li3PS4 glass electrolytes by adding MxOy (M = Fe, Zn, and Bi) nanoparticles - Journal of Materials Chemistry A (RSC Publishing)

The BV-based method calculated lithium migration pathways for... | Download  Scientific Diagram
The BV-based method calculated lithium migration pathways for... | Download Scientific Diagram

Stabilization of the Li3PS4's High-Temperature Phase Achieved
Stabilization of the Li3PS4's High-Temperature Phase Achieved