An old blending strategy can enhance capacity retention of Ni-rich cathode materials - ScienceDirect

Description

Stabilization of a High-Capacity and High-Power Nickel-Based Cathode for Li-Ion Batteries - ScienceDirect

Recycling and environmental issues of lithium-ion batteries: Advances, challenges and opportunities - ScienceDirect

An old blending strategy can enhance capacity retention of Ni-rich cathode materials - ScienceDirect

Enhancing the structural stability and capacity retention of Ni-rich LiNi0.7Co0.3O2 cathode materials via Ti doping for rechargeable Li-ion batteries: Experimental and computational approaches - ScienceDirect

Mitigating irreversible capacity loss for higher-energy lithium batteries - ScienceDirect

Lithium-ion batteries for low-temperature applications: Limiting factors and solutions - ScienceDirect

Enhancing the structural stability and capacity retention of Ni-rich LiNi0.7Co0.3O2 cathode materials via Ti doping for rechargeable Li-ion batteries: Experimental and computational approaches - ScienceDirect

Recycling and environmental issues of lithium-ion batteries: Advances, challenges and opportunities - ScienceDirect

Polypyrrole based cathode material for battery application - ScienceDirect

An old blending strategy can enhance capacity retention of Ni-rich cathode materials - ScienceDirect

Stabilization of a High-Capacity and High-Power Nickel-Based Cathode for Li-Ion Batteries - ScienceDirect

A review of nickel-rich layered oxide cathodes: synthetic strategies, structural characteristics, failure mechanism, improvement approaches and prospects - ScienceDirect

Papers 2023 - cestvistec

Li-ion battery materials: present and future - ScienceDirect

Enhancing the structural stability and capacity retention of Ni-rich LiNi0.7Co0.3O2 cathode materials via Ti doping for rechargeable Li-ion batteries: Experimental and computational approaches - ScienceDirect

$ 17.00USD
Score 5(649)
In stock
Continue to book