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Interfacial Challenges in Solid-State Li Ion Batteries
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October 2015 |
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Solid Electrolyte: the Key for High-Voltage Lithium Batteries
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October 2014 |
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Special points for Brillouin-zone integrations
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June 1976 |
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Tutorial: Defects in semiconductors—Combining experiment and theory
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May 2016 |
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Designing solid-state electrolytes for safe, energy-dense batteries
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February 2020 |
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Computation‐Guided Design of LiTaSiO 5 , a New Lithium Ionic Conductor with Sphene Structure
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April 2019 |
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An advanced model framework for solid electrolyte intercalation batteries
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January 2011 |
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Compatibility issues between electrodes and electrolytes in solid-state batteries
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January 2017 |
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First-principles calculations for point defects in solids
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March 2014 |
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Space-Charge Layers in All-Solid-State Batteries; Important or Negligible?
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October 2018 |
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Cation Mixing Properties toward Co Diffusion at the LiCoO 2 Cathode/Sulfide Electrolyte Interface in a Solid-State Battery
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December 2016 |
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Building better batteries
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February 2008 |
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Structure–property relationships in lithium superionic conductors having a Li 10 GeP 2 S 12 -type structure
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December 2015 |
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Ab initio molecular dynamics for open-shell transition metals
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November 1993 |
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Modeling the electrical double layer at solid-state electrochemical interfaces
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March 2021 |
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Relating voltage and thermal safety in Li-ion battery cathodes: a high-throughput computational study
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January 2015 |
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In-Channel and In-Plane Li Ion Diffusions in the Superionic Conductor Li 10 GeP 2 S 12 Probed by Solid-State NMR
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August 2015 |
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Electrode Degradation in Lithium-Ion Batteries
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January 2020 |
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First-Principles Prediction of Potentials and Space-Charge Layers in All-Solid-State Batteries
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April 2019 |
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Structures, Thermodynamics, and Li + Mobility of Li 10 GeP 2 S 12 : A First-Principles Analysis
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May 2014 |
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Defect Physics, Delithiation Mechanism, and Electronic and Ionic Conduction in Layered Lithium Manganese Oxide Cathode Materials
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February 2015 |
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High-power all-solid-state batteries using sulfide superionic conductors
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March 2016 |
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Phase stability, electrochemical stability and ionic conductivity of the Li 10±1 MP 2 X 12 (M = Ge, Si, Sn, Al or P, and X = O, S or Se) family of superionic conductors
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January 2013 |
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Single-crystal X-ray structure analysis of the superionic conductor Li10GeP2S12
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January 2013 |
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Tailoring Native Defects in LiFePO 4 : Insights from First-Principles Calculations
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June 2011 |
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Conduction Mechanism of Li10GeP2S12-type Lithium Superionic Conductors in a Li–Sn–Si–P–S System
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April 2019 |
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High Energy Density Solid State Lithium Metal Batteries Enabled by Sub‐5 µm Solid Polymer Electrolytes
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September 2021 |
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Unlocking the Failure Mechanism of Solid State Lithium Metal Batteries
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June 2021 |
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Direct Observation of the Interfacial Instability of the Fast Ionic Conductor Li 10 GeP 2 S 12 at the Lithium Metal Anode
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March 2016 |
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Designing inorganic electrolytes for solid-state Li-ion batteries: A perspective of LGPS and garnet
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November 2021 |
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Degradation Mechanisms at the Li 10 GeP 2 S 12 /LiCoO 2 Cathode Interface in an All-Solid-State Lithium-Ion Battery
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June 2018 |
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Challenges for Rechargeable Li Batteries
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February 2010 |
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First Principles Study of the Li10GeP2S12 Lithium Super Ionic Conductor Material
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December 2011 |
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Batteries and fuel cells for emerging electric vehicle markets
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April 2018 |
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Native Defects in Li 10 GeP 2 S 12 and Their Effect on Lithium Diffusion
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July 2018 |
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Thermodynamically Consistent Model for Space-Charge-Layer Formation in a Solid Electrolyte
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September 2015 |
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Understanding Doping of Quantum Materials
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January 2021 |
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Accessing the bottleneck in all-solid state batteries, lithium-ion transport over the solid-electrolyte-electrode interface
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October 2017 |
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Understanding interface stability in solid-state batteries
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December 2019 |
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A lithium superionic conductor
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July 2011 |
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Space–Charge Layer Effect at Interface between Oxide Cathode and Sulfide Electrolyte in All-Solid-State Lithium-Ion Battery
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July 2014 |
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Generalized Gradient Approximation Made Simple
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October 1996 |
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Holistic computational structure screening of more than 12 000 candidates for solid lithium-ion conductor materials
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January 2017 |
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Improved Lithium Diffusion in Anion-Substituted Li7TaO6
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September 2022 |