Owing to their high earth‐abundance, eco‐friendliness, high electrical conductivity, large surface area, structure tunability at the atomic/morphological levels, and excellent stability in …
The olivine LiFePO4 now stands as a competitive candidate of cathode material for the next generation of a green and sustainable lithium-ion battery system due to its long life span …
WJ Zhang - Journal of Power Sources, 2011 - Elsevier
LiFePO4 has been considered a promising battery material in electric vehicles. However, there are still a number of technical challenges to overcome before its wide-spread …
Over the past decade, carbon dots have ignited a burst of interest in many different fields, including nanomedicine, solar energy, optoelectronics, energy storage, and sensing …
J Li, C Daniel, D Wood - Journal of Power Sources, 2011 - Elsevier
Extensive efforts have been undertaken to develop and optimize new materials for lithium- ion batteries to address power and energy demands of mobile electronics and electric …
T Satyavani, AS Kumar, PSVS Rao - Engineering Science and Technology …, 2016 - Elsevier
Lithium ion battery technology has the potential to meet the requirements of high energy density and high power density applications. A continuous search for novel materials is …
Y Shen - Journal of Materials Chemistry A, 2015 - pubs.rsc.org
Carbothermal reduction could be employed as a facile technology for the synthesis of various novel materials, especially transition-metal-functionalized nanostructures. In …
MK Devaraju, I Honma - Advanced Energy Materials, 2012 - Wiley Online Library
Positive electrodes such as LiFePO4 and LiMnPO4 nanomaterials with olivine structures are considered as most efficient cathode materials for application in lithium ion batteries …
Olivine structure LiFePO4 attracted much attention as a promising cathode material for lithium-ion batteries. The overwhelming advantage of iron-based compounds is that, in …