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LiNbO3-coated LiNi0.8Co0.1Mn0.1O2 cathode with high discharge capacity and  rate performance for all-solid-state lithium battery | Semantic Scholar
LiNbO3-coated LiNi0.8Co0.1Mn0.1O2 cathode with high discharge capacity and rate performance for all-solid-state lithium battery | Semantic Scholar

The Working Principle of a Li2CO3/LiNbO3 Coating on NCM for  Thiophosphate-Based All-Solid-State Batteries | Chemistry of Materials
The Working Principle of a Li2CO3/LiNbO3 Coating on NCM for Thiophosphate-Based All-Solid-State Batteries | Chemistry of Materials

Bifunctional Surface Coating of LiNbO3 on High-Ni Layered Cathode Materials  for Lithium-Ion Batteries | ACS Applied Materials & Interfaces
Bifunctional Surface Coating of LiNbO3 on High-Ni Layered Cathode Materials for Lithium-Ion Batteries | ACS Applied Materials & Interfaces

Micromachines | Free Full-Text | The Wafer-Level Integration of  Single-Crystal LiNbO3 on Silicon via Polyimide Material
Micromachines | Free Full-Text | The Wafer-Level Integration of Single-Crystal LiNbO3 on Silicon via Polyimide Material

Various Interfaces in a Coated Cathode Composite | Download Scientific  Diagram
Various Interfaces in a Coated Cathode Composite | Download Scientific Diagram

Improving the electrochemical properties of the Li-rich cathode material  0.5Li2MnO3·0.5LiNi1/3Co1/3Mn1/3O2 by coating the bi-functional amorphous  LiNbO3 | SpringerLink
Improving the electrochemical properties of the Li-rich cathode material 0.5Li2MnO3·0.5LiNi1/3Co1/3Mn1/3O2 by coating the bi-functional amorphous LiNbO3 | SpringerLink

Lithium-conductive LiNbO3 coated high-voltage LiNi0.5Co0.2Mn0.3O2 cathode  with enhanced rate and cyclability - ScienceDirect
Lithium-conductive LiNbO3 coated high-voltage LiNi0.5Co0.2Mn0.3O2 cathode with enhanced rate and cyclability - ScienceDirect

Energies | Free Full-Text | An Environmental and Technical Evaluation of  Vacuum-Based Thin Film Technologies: Lithium Niobate Coated Cathode Active  Material for Use in All-Solid-State Battery Cells
Energies | Free Full-Text | An Environmental and Technical Evaluation of Vacuum-Based Thin Film Technologies: Lithium Niobate Coated Cathode Active Material for Use in All-Solid-State Battery Cells

Enhancing the High Rate Capability and Cycling Stability of LiMn2O4 by  Coating of Solid-State Electrolyte LiNbO3 | ACS Applied Materials &  Interfaces
Enhancing the High Rate Capability and Cycling Stability of LiMn2O4 by Coating of Solid-State Electrolyte LiNbO3 | ACS Applied Materials & Interfaces

LiNbO3-coated Li1.2Mn0.54Ni0.13Co0.13O2 as a cathode material with enhanced  electrochemical performances for lithium-ion batteries | SpringerLink
LiNbO3-coated Li1.2Mn0.54Ni0.13Co0.13O2 as a cathode material with enhanced electrochemical performances for lithium-ion batteries | SpringerLink

Annealing-induced evolution at the LiCoO2/LiNbO3 interface and its  functions in all-solid-state batteries with a Li10GeP2S12 electrolyte -  Journal of Materials Chemistry A (RSC Publishing)
Annealing-induced evolution at the LiCoO2/LiNbO3 interface and its functions in all-solid-state batteries with a Li10GeP2S12 electrolyte - Journal of Materials Chemistry A (RSC Publishing)

Annealing-induced evolution at the LiCoO2/LiNbO3 interface and its  functions in all-solid-state batteries with a Li10GeP2S12 ele
Annealing-induced evolution at the LiCoO2/LiNbO3 interface and its functions in all-solid-state batteries with a Li10GeP2S12 ele

Enhancing the Stability of LiNi0.5Mn1.5O4 by Coating with LiNbO3  Solid-State Electrolyte: Novel Chemically Activated Coating Pro
Enhancing the Stability of LiNi0.5Mn1.5O4 by Coating with LiNbO3 Solid-State Electrolyte: Novel Chemically Activated Coating Pro

Bifunctional Surface Coating of LiNbO3 on High-Ni Layered Cathode Materials  for Lithium-Ion Batteries | ACS Applied Materials & Interfaces
Bifunctional Surface Coating of LiNbO3 on High-Ni Layered Cathode Materials for Lithium-Ion Batteries | ACS Applied Materials & Interfaces

The Working Principle of a Li2CO3/LiNbO3 Coating on NCM for  Thiophosphate-Based All-Solid-State Batteries | Chemistry of Materials
The Working Principle of a Li2CO3/LiNbO3 Coating on NCM for Thiophosphate-Based All-Solid-State Batteries | Chemistry of Materials

LiNbO3-coated LiNi0.8Co0.1Mn0.1O2 cathode with high discharge capacity and  rate performance for all-solid-state lithium battery - ScienceDirect
LiNbO3-coated LiNi0.8Co0.1Mn0.1O2 cathode with high discharge capacity and rate performance for all-solid-state lithium battery - ScienceDirect

Comparison of LiTaO3 and LiNbO3 Surface Layers Prepared by Post- and  Precursor-Based Coating Methods for Ni-Rich Cathodes of All-Solid-State  Batteries | ACS Applied Materials & Interfaces
Comparison of LiTaO3 and LiNbO3 Surface Layers Prepared by Post- and Precursor-Based Coating Methods for Ni-Rich Cathodes of All-Solid-State Batteries | ACS Applied Materials & Interfaces

Enhancing the Stability of LiNi0.5Mn1.5O4 by Coating with LiNbO3  Solid-State Electrolyte: Novel Chemically Activated Coating Pro
Enhancing the Stability of LiNi0.5Mn1.5O4 by Coating with LiNbO3 Solid-State Electrolyte: Novel Chemically Activated Coating Pro

Li2ZrO3-Coated NCM622 for Application in Inorganic Solid-State Batteries:  Role of Surface Carbonates in the Cycling Performance
Li2ZrO3-Coated NCM622 for Application in Inorganic Solid-State Batteries: Role of Surface Carbonates in the Cycling Performance

Lithium-conductive LiNbO3 coated high-voltage LiNi0.5Co0.2Mn0.3O2 cathode  with enhanced rate and cyclability - ScienceDirect
Lithium-conductive LiNbO3 coated high-voltage LiNi0.5Co0.2Mn0.3O2 cathode with enhanced rate and cyclability - ScienceDirect

Bifunctional Surface Coating of LiNbO3 on High-Ni Layered Cathode Materials  for Lithium-Ion Batteries | ACS Applied Materials & Interfaces
Bifunctional Surface Coating of LiNbO3 on High-Ni Layered Cathode Materials for Lithium-Ion Batteries | ACS Applied Materials & Interfaces

A nano-LiNbO3 coating layer and diffusion-induced surface control towards  high-performance 5 V spinel cathodes for rechargeable
A nano-LiNbO3 coating layer and diffusion-induced surface control towards high-performance 5 V spinel cathodes for rechargeable