Since 1991, when Sony succeeded in commercializing lithium-ion batteries using LiCoO2 cathode materials, studies on layered structural cathode materials have been actively conducted. Over the past two decades, the research flow was focused on compensating for the disadvantages of LiCoO2 cathode materials (low capacity, toxicity, high price) by partially replacing Co with Ni to increase the capacity and by adding Mn or Al to improve the structural stability and cycle life. By controlling the composition of Li[NixCoyMnz]O2 (NCM, x+y+z=1) or Li[NixCoyAlz]O2 (NCA, x+y+z=1) ternary compounds, changes in fundamental physicochemical properties, electrochemical properties, and thermal stability were observed and the studies were conducted to find t...
The ever-growing market of consumer electronics has been driving surging demand for higher-energy-de...
High energy-density lithium-ion batteries are in demand for portable electronic devices and electric...
In this paper, the intrinsic impact of inner structure features on the electrochemical performances ...
Compositionally graded Li[Ni0.84Co0.06Mn0.09Al0.01]O-2 (TSFCG-Al) with two-step concentration gradie...
Compositionally graded Li[Ni0.84Co0.06Mn0.09Al0.01]O-2 (TSFCG-Al) with two-step concentration gradie...
Compositionally graded Li[Ni<sub>0.84</sub>Co<sub>0.06</sub>Mn<sub>0.09</sub>Al<sub>0.01</sub>]O<s...
Doping is a well-known strategy to enhance the electrochemical energy storage performance of layered...
Abstract(#br)Li-rich layered oxide cathode materials (LLOs) are regarded as promising next-generatio...
Li[NixCoyMn1?x?y]O2 cathode materials were synthesized with varying concentration gradients of Ni an...
Ni-rich layered transition metal oxides show great energy density but suffer poor thermal stability ...
A spherical Core-Shell (CS) structured cathode material with an average composition of Li[Ni0.95Co0....
Layered lithium nickel-rich oxides, Li[Ni(1-x)M(x)]O(2) (M = metal), have attracted significant inte...
Li was incorporated into transition metal layers of Ni-rich Li[Ni0.95Co0.05]O-2 by formation of a so...
A novel concentration-gradient Li[Ni 0.83 Co 0.07 Mn 0.10 ]O 2 cathode material was successfully syn...
The ever-growing market of consumer electronics has been driving surging demand for higher-energy-de...
The ever-growing market of consumer electronics has been driving surging demand for higher-energy-de...
High energy-density lithium-ion batteries are in demand for portable electronic devices and electric...
In this paper, the intrinsic impact of inner structure features on the electrochemical performances ...
Compositionally graded Li[Ni0.84Co0.06Mn0.09Al0.01]O-2 (TSFCG-Al) with two-step concentration gradie...
Compositionally graded Li[Ni0.84Co0.06Mn0.09Al0.01]O-2 (TSFCG-Al) with two-step concentration gradie...
Compositionally graded Li[Ni<sub>0.84</sub>Co<sub>0.06</sub>Mn<sub>0.09</sub>Al<sub>0.01</sub>]O<s...
Doping is a well-known strategy to enhance the electrochemical energy storage performance of layered...
Abstract(#br)Li-rich layered oxide cathode materials (LLOs) are regarded as promising next-generatio...
Li[NixCoyMn1?x?y]O2 cathode materials were synthesized with varying concentration gradients of Ni an...
Ni-rich layered transition metal oxides show great energy density but suffer poor thermal stability ...
A spherical Core-Shell (CS) structured cathode material with an average composition of Li[Ni0.95Co0....
Layered lithium nickel-rich oxides, Li[Ni(1-x)M(x)]O(2) (M = metal), have attracted significant inte...
Li was incorporated into transition metal layers of Ni-rich Li[Ni0.95Co0.05]O-2 by formation of a so...
A novel concentration-gradient Li[Ni 0.83 Co 0.07 Mn 0.10 ]O 2 cathode material was successfully syn...
The ever-growing market of consumer electronics has been driving surging demand for higher-energy-de...
The ever-growing market of consumer electronics has been driving surging demand for higher-energy-de...
High energy-density lithium-ion batteries are in demand for portable electronic devices and electric...
In this paper, the intrinsic impact of inner structure features on the electrochemical performances ...