To understand what and how structural properties affect battery performance, and to optimize the structural properties accordingly are of crucial importance to improve the performance of cathode materials for advanced Li-ion batteries. Herein, we investigated the influence of Li-enrichment in Li1+x(Ni0.8Co0.2)1-xO2 transition metal (TM) oxide cathodes, obtained by sintering Ni0.8Co0.2(OH)2 precursor with different amount of Li sources. Compared with stoichiometric Li1+x(Ni0.8Co0.2)1-xO2 (i.e. x = 0, Li:TM = 1:1), the improvements of cycling stability and rate performance were observed in material with moderate degree of Li-enrichment with respect to TMs (i.e. x = 0.019, Li:TM = 1.04:1). Further increase in Li:TM ratio up to 1.07 diminishes ...
With the development of high energy density battery technology, layered transition metal oxide catho...
Li was incorporated into transition metal layers of Ni-rich Li[Ni0.95Co0.05]O-2 by formation of a so...
Ni-rich layered oxides are the most promising cathode materials for Li-ion batteries due to their hi...
Owing to high specific capacity of ∼250 mA h g<sup>–1</sup>, lithium-rich layered oxide cathode mate...
High energy-density lithium-ion batteries are in demand for portable electronic devices and electric...
Surface element segregation and electric conductivity are critical in determining lithium storage ab...
Layered lithium-nickel-cobalt-manganese oxide (NCM) materials have emerged as promising alternative ...
Doping is a well-known strategy to enhance the electrochemical energy storage performance of layered...
Li-rich layered oxide materials are promising candidates for high-energy Li-ion batteries. They show...
Nickel-rich layered metal oxide materials are prospective cathode materials for lithium ion batterie...
Lithium‐rich transition metal cathodes can deliver higher capacities than stoichiometric materials b...
The thriving energy-storage market has been motivating enormous efforts to advance the state-of-art ...
Li-rich layered metal oxides are one type of the most promising cathode materials in lithium-ion bat...
Nickel-rich metal oxides have been widely pursued as promising cathode materials for high energy den...
A variety of approaches are being made to enhance the performance of lithium ion batteries. Incorpor...
With the development of high energy density battery technology, layered transition metal oxide catho...
Li was incorporated into transition metal layers of Ni-rich Li[Ni0.95Co0.05]O-2 by formation of a so...
Ni-rich layered oxides are the most promising cathode materials for Li-ion batteries due to their hi...
Owing to high specific capacity of ∼250 mA h g<sup>–1</sup>, lithium-rich layered oxide cathode mate...
High energy-density lithium-ion batteries are in demand for portable electronic devices and electric...
Surface element segregation and electric conductivity are critical in determining lithium storage ab...
Layered lithium-nickel-cobalt-manganese oxide (NCM) materials have emerged as promising alternative ...
Doping is a well-known strategy to enhance the electrochemical energy storage performance of layered...
Li-rich layered oxide materials are promising candidates for high-energy Li-ion batteries. They show...
Nickel-rich layered metal oxide materials are prospective cathode materials for lithium ion batterie...
Lithium‐rich transition metal cathodes can deliver higher capacities than stoichiometric materials b...
The thriving energy-storage market has been motivating enormous efforts to advance the state-of-art ...
Li-rich layered metal oxides are one type of the most promising cathode materials in lithium-ion bat...
Nickel-rich metal oxides have been widely pursued as promising cathode materials for high energy den...
A variety of approaches are being made to enhance the performance of lithium ion batteries. Incorpor...
With the development of high energy density battery technology, layered transition metal oxide catho...
Li was incorporated into transition metal layers of Ni-rich Li[Ni0.95Co0.05]O-2 by formation of a so...
Ni-rich layered oxides are the most promising cathode materials for Li-ion batteries due to their hi...