Abstract Wadsley–Roth crystallographic shear structure niobium‐based oxides are of great interest in fast Li+ storage due to their unique 3D open tunnel structures that offer facile Li+ diffusion paths. Their moderate lithiation potential and reversible redox couples hold the great promise in the development of next‐generation lithium‐ion batteries (LIBs) that are characterized by high power density, long lifespan, and high safety. Despite these outstanding merits, there is still extensive advancement space for further enhancing their electrochemical kinetics. And the industrial feasibility of Wadsley–Roth crystallographic shear structure niobium‐based oxides as anode materials for LIBs requires more systematic research. In this review, rec...
In this review, we summarized the recent progresses using niobium-based oxide as electrodes for batt...
This thesis contains two parts, namely (1) the structural design of niobium-based oxides for fast-ch...
Lithium ion batteries are essential for energy storage in many applications, such as portable electr...
Lithium-ion batteries have transformed energy storage and technological applications. They stand po...
In the last years of research on new anode materials for advanced Lithium-Ion Batteries (LIBs), niob...
Wadsley–Roth (WR) crystallographic shear structures demonstrate high energy and power densities as L...
Niobium-based oxides including Nb2O5, TiNbxO2+2.5x compounds, M-Nb-O (M = Cr, Ga, Fe, Zr, Mg, etc.) ...
Wadsley-Roth crystallographic shear phases form a family of compounds that have attracted attention ...
Their high potential window can prevent the formation of lithium dendrites, as well as the rich redo...
The development of high-performing battery materials is critical to meet the ever-increasing demand ...
Fast charging is one of the key requirements for next-generation lithium-ion batteries, however, lit...
The maximum power output and minimum charging time of a lithium-ion battery depend on both ionic and...
Nb18W8O69 (9Nb2O5·8WO3) is the tungsten-rich end-member of the Wadsley–Roth crystallographic shear (...
Lithium ion batteries (LIBs) possess energy densities higher than those of the conventional batterie...
This thesis uses first-principles methods to study complex oxide materials. The first part of the th...
In this review, we summarized the recent progresses using niobium-based oxide as electrodes for batt...
This thesis contains two parts, namely (1) the structural design of niobium-based oxides for fast-ch...
Lithium ion batteries are essential for energy storage in many applications, such as portable electr...
Lithium-ion batteries have transformed energy storage and technological applications. They stand po...
In the last years of research on new anode materials for advanced Lithium-Ion Batteries (LIBs), niob...
Wadsley–Roth (WR) crystallographic shear structures demonstrate high energy and power densities as L...
Niobium-based oxides including Nb2O5, TiNbxO2+2.5x compounds, M-Nb-O (M = Cr, Ga, Fe, Zr, Mg, etc.) ...
Wadsley-Roth crystallographic shear phases form a family of compounds that have attracted attention ...
Their high potential window can prevent the formation of lithium dendrites, as well as the rich redo...
The development of high-performing battery materials is critical to meet the ever-increasing demand ...
Fast charging is one of the key requirements for next-generation lithium-ion batteries, however, lit...
The maximum power output and minimum charging time of a lithium-ion battery depend on both ionic and...
Nb18W8O69 (9Nb2O5·8WO3) is the tungsten-rich end-member of the Wadsley–Roth crystallographic shear (...
Lithium ion batteries (LIBs) possess energy densities higher than those of the conventional batterie...
This thesis uses first-principles methods to study complex oxide materials. The first part of the th...
In this review, we summarized the recent progresses using niobium-based oxide as electrodes for batt...
This thesis contains two parts, namely (1) the structural design of niobium-based oxides for fast-ch...
Lithium ion batteries are essential for energy storage in many applications, such as portable electr...