The drive to lower the consumption of fossil fuels in transportation has reached unprecedented levels due to both energy and environmental concerns. A global effort has been undertaken to develop advanced lithium-ion battery (LIB) technologies for the electrification of transportation, with the goal of significantly reducing fossil fuel consumption. In current LIBs, energy density is mainly limited by the capacity and thermodynamics of cathode materials. So improvements in cathode materials are critically needed, particularly for demanding electric vehicle applications. The studies have focused on a series of high-performance cathode materials for LIBs. Key synthesis parameters including pH, stirring rate and calcination temperature have be...
Future generations of electric vehicles require driving ranges of at least 300 miles to successfully...
This thesis investigates several approaches to the development of high-performance batteries. A gene...
Thesis (Ph. D.)--University of Rochester. Materials Science Program, 2014.Energy storage systems pla...
The current state-of-the-art lithium ion batteries (LIBs) have dominated the small format battery ma...
The current state-of-the-art lithium ion batteries (LIBs) have dominated the small format battery ma...
This Ph.D project was motivated by a desire to prepare and study advanced cathode materials with hig...
Among the various Ni-based layered oxide systems in the form of LiNi1-y-zCoyAlzO2 (NCA), the compost...
A synthetic condition for LiNi0.5Co0.2Mn0.3O2 cathode materials to improve their rate capability and...
This PH.D project aims to prepare and study the preparations of advanced electrode materials with hi...
MasterDeveloping cathode electrode materials with high energy densities is required for Li-ion batte...
The development of new materials for energy applications is necessary to create new solutions to min...
Safe Li-ion batteries with high power density that can operate over a wide temperature range, includ...
Amongst a number of different cathode materials, the layered nickel-rich LiNiyCoxMn1−y−xO2 and the i...
The rechargeable lithium ion batteries (LIB) are playing increasingly important roles in powering p...
Future generations of electric vehicles require driving ranges of at least 300 miles to successfully...
Future generations of electric vehicles require driving ranges of at least 300 miles to successfully...
This thesis investigates several approaches to the development of high-performance batteries. A gene...
Thesis (Ph. D.)--University of Rochester. Materials Science Program, 2014.Energy storage systems pla...
The current state-of-the-art lithium ion batteries (LIBs) have dominated the small format battery ma...
The current state-of-the-art lithium ion batteries (LIBs) have dominated the small format battery ma...
This Ph.D project was motivated by a desire to prepare and study advanced cathode materials with hig...
Among the various Ni-based layered oxide systems in the form of LiNi1-y-zCoyAlzO2 (NCA), the compost...
A synthetic condition for LiNi0.5Co0.2Mn0.3O2 cathode materials to improve their rate capability and...
This PH.D project aims to prepare and study the preparations of advanced electrode materials with hi...
MasterDeveloping cathode electrode materials with high energy densities is required for Li-ion batte...
The development of new materials for energy applications is necessary to create new solutions to min...
Safe Li-ion batteries with high power density that can operate over a wide temperature range, includ...
Amongst a number of different cathode materials, the layered nickel-rich LiNiyCoxMn1−y−xO2 and the i...
The rechargeable lithium ion batteries (LIB) are playing increasingly important roles in powering p...
Future generations of electric vehicles require driving ranges of at least 300 miles to successfully...
Future generations of electric vehicles require driving ranges of at least 300 miles to successfully...
This thesis investigates several approaches to the development of high-performance batteries. A gene...
Thesis (Ph. D.)--University of Rochester. Materials Science Program, 2014.Energy storage systems pla...