Connor Thomas Murrill
Solid-state devices, as the next generation of lithium-ion batteries, have the potential to improve performance characteristics, meeting growing demands for energy storage infrastructure. Electrode materials of importance focus on layered lithium metal oxides, while many candidates for solid-state electrolytes have emerged. Lithium lanthanum zirconium oxide (Li7La3Zr2O12) is an electrolyte of significant interest, based on competitive lithium conductivity. Electron microscopy and associated spectroscopic techniques, from micron to atomic scales, can develop understanding of bulk and interfacial characteristics regarding features fundamental to battery performance, such as lithium intercalation routes and structural failure mechanisms. Atomic resolution microscopy has the potential to develop upon current imaging and spectroscopic studies of solid-state materials. In this project, GB spanning particle cross-sections and complex defect structures were revealed within both LiCoO2 and Li7La3Zr2O12. Grain boundaries and defects exhibited variable potential impacts on Li mobility both beneficial and detrimental to performance. Significant interfacial decomposition occurs between LiCoO2 and Li7La3Zr2O12 particles during annealing, forming Li2CO3 or LaCoO3 depending on the temperature. Pulsed laser deposition of LiCoO2 onto Al2O3, SrTiO3 and Gd5Ga3O12 substrates at low temperature formed multi-phase systems, with nanograins of rhombohedral LiCoO2, rock salt CoO and spinel Co3O4.
@article{32201a32-fdaf-4cc6-839b-4432aca89471,
title={Structural and chemical characterisation of LiCoO2 and Li7La3Zr2O12 from the micron to the atomic scales for solid-state Li-ion energy storage materials},
author={Connor Thomas Murrill},
year={2017},
language={en}
}TY - JOUR TI - Structural and chemical characterisation of LiCoO2 and Li7La3Zr2O12 from the micron to the atomic scales for solid-state Li-ion energy storage materials AU - Connor Thomas Murrill PY - 2017 LA - en ER -
Arthur C. Reardon
This publication, edited by Arthur C. Reardon and published by ASM International®, serves as a comprehensive guide in the field of materials science.
Roger Rumbu
Msc. Shaymaa Mahmood
The evolution of mankind has been marked by the ability to utilize and develop various materials to meet human needs. This paper explores the signific
Lifeng Zhang, Antoine Allanore
This volume compiles peer-reviewed papers from the “Materials Processing Fundamentals” symposium held at the TMS 2013 Annual Meeting & Exhibition in S
Ian Cameron, Mitren Sukhram
This book delves into the intricate processes involved in blast furnace ironmaking, emphasizing the analysis, control, and optimization of operations.
Deepak Malhotra
This work discusses the essential components of a rigorous auditing process aimed at enhancing metallurgical plant performance. The objective is to id