Li segregation and transport characteristics in amorphous TiO<sub>2</sub> nanoparticles (NPs) are studied using molecular dynamics (MD) simulations. A strong intraparticle segregation of Li is observed, and the degree of segregation is found to correlate with Li concentration. With increasing Li concentration, Li diffusivity and segregation are enhanced, and this behavior is tied to the structural response of the NPs with increasing lithiation. The atoms in the amorphous NPs undergo rearrangement in the regions of high Li concentration, introducing new pathways for Li transport and segregation. These localized atomic rearrangements, in turn, induce preferential crystallization near the surfaces of the NPs. Such rich, dynamical responses are...
ABSTRACT: We perform a comprehensive first-principles statistical mechanical study of the thermodyna...
We perform a comprehensive first-principles statistical mechanical study of the thermodynamic and ki...
Amorphous titanium oxide nanoparticles were prepared from titanium isopropoxide. In situ measurement...
We present the results of molecular dynamics simulations on the disorder–order transition of highly ...
In this paper, we report the first direct chemical and imaging evidence of lithium-induced atomic or...
In this paper, we report the first direct chemical and imaging evidence of lithium-induced atomic or...
Sustainable energy storage in the form of Li-ion batteries requires new and advanced materials in pa...
Safe, reliable materials with fast charging kinetics are required to increase the power density of b...
TiO<sub>2</sub> (B) has attracted considerable attention in recent years because it exhibits the lar...
TiO2 (B) has attracted considerable attention in recent years because it exhibits the largest capaci...
TiO2 (B) has attracted considerable attention in recent years because it exhibits the largest capaci...
Nanostructured titania (TiO<sub>2</sub>) polymorphs have proved to be promising electrode materials ...
The electrochemical lithiation/delithiation behavior of self-organized amorphous and anatase titaniu...
The lithium insertion behavior of nanoparticle (3-D) and nanosheet (2-D) architectures of TiO<sub>2<...
The layered fast ion conductor LixTiS2 (x ≈ 2/3) has been prepared in nanocrystalline (n-LixTiS2) an...
ABSTRACT: We perform a comprehensive first-principles statistical mechanical study of the thermodyna...
We perform a comprehensive first-principles statistical mechanical study of the thermodynamic and ki...
Amorphous titanium oxide nanoparticles were prepared from titanium isopropoxide. In situ measurement...
We present the results of molecular dynamics simulations on the disorder–order transition of highly ...
In this paper, we report the first direct chemical and imaging evidence of lithium-induced atomic or...
In this paper, we report the first direct chemical and imaging evidence of lithium-induced atomic or...
Sustainable energy storage in the form of Li-ion batteries requires new and advanced materials in pa...
Safe, reliable materials with fast charging kinetics are required to increase the power density of b...
TiO<sub>2</sub> (B) has attracted considerable attention in recent years because it exhibits the lar...
TiO2 (B) has attracted considerable attention in recent years because it exhibits the largest capaci...
TiO2 (B) has attracted considerable attention in recent years because it exhibits the largest capaci...
Nanostructured titania (TiO<sub>2</sub>) polymorphs have proved to be promising electrode materials ...
The electrochemical lithiation/delithiation behavior of self-organized amorphous and anatase titaniu...
The lithium insertion behavior of nanoparticle (3-D) and nanosheet (2-D) architectures of TiO<sub>2<...
The layered fast ion conductor LixTiS2 (x ≈ 2/3) has been prepared in nanocrystalline (n-LixTiS2) an...
ABSTRACT: We perform a comprehensive first-principles statistical mechanical study of the thermodyna...
We perform a comprehensive first-principles statistical mechanical study of the thermodynamic and ki...
Amorphous titanium oxide nanoparticles were prepared from titanium isopropoxide. In situ measurement...