Although crystalline silicon (c-Si) anodes promise very high energy densities in Li-ion batteries, their practical use is complicated by amorphization, large volume expansion and severe plastic deformation upon lithium insertion. Recent experiments have revealed the existence of a sharp interface between crystalline Si (c-Si) and the amorphous Li[subscript x]Si alloy during lithiation, which propagates with a velocity that is orientation dependent; the resulting anisotropic swelling generates substantial strain concentrations that initiate cracks even in nanostructured Si. Here we describe a novel strategy to mitigate lithiation-induced fracture by using pristine c-Si structures with engineered anisometric morphologies that are deliberately...
Silicon is regarded as one of the most promising next generation lithium-ion battery anodes due to i...
To develop high-capacity Li-ion batteries, volume expansion and material degradation of Si anodes ha...
Silicon is regarded as one of the most promising next generation lithium-ion battery anodes due to i...
Large anisotropic volume expansion during lithiation leads to the electrochemical performance degrad...
As the need for smaller, lighter, and longer lasting energy storage increases, silicon (Si) rises as...
© 2018 Springer-Verlag GmbH Austria, part of Springer Nature High-capacity active electrodes, such a...
The application of silicon (Si) as potential anode material in Li-ion batteries provides a more than...
The application of silicon (Si) as potential anode material in Li-ion batteries provides a more than...
The application of silicon (Si) as potential anode material in Li-ion batteries provides a more than...
The application of silicon (Si) as potential anode material in Li-ion batteries provides a more tha...
Lithium-ion batteries enable a modern, mobile society and are a widely used source of portable energ...
Lithium-ion (Li-ion) batteries are critically important for portable electronics, electric vehicles,...
ABSTRACT: Recent independent experiments demonstrated that the lithiation-induced volume expansion i...
Following an explosion of studies of silicon as a negative electrode for Li-ion batteries, the anoma...
Silicon (Si) is widely regarded as one of the most promising anode materials for Li ion battery (LIB...
Silicon is regarded as one of the most promising next generation lithium-ion battery anodes due to i...
To develop high-capacity Li-ion batteries, volume expansion and material degradation of Si anodes ha...
Silicon is regarded as one of the most promising next generation lithium-ion battery anodes due to i...
Large anisotropic volume expansion during lithiation leads to the electrochemical performance degrad...
As the need for smaller, lighter, and longer lasting energy storage increases, silicon (Si) rises as...
© 2018 Springer-Verlag GmbH Austria, part of Springer Nature High-capacity active electrodes, such a...
The application of silicon (Si) as potential anode material in Li-ion batteries provides a more than...
The application of silicon (Si) as potential anode material in Li-ion batteries provides a more than...
The application of silicon (Si) as potential anode material in Li-ion batteries provides a more than...
The application of silicon (Si) as potential anode material in Li-ion batteries provides a more tha...
Lithium-ion batteries enable a modern, mobile society and are a widely used source of portable energ...
Lithium-ion (Li-ion) batteries are critically important for portable electronics, electric vehicles,...
ABSTRACT: Recent independent experiments demonstrated that the lithiation-induced volume expansion i...
Following an explosion of studies of silicon as a negative electrode for Li-ion batteries, the anoma...
Silicon (Si) is widely regarded as one of the most promising anode materials for Li ion battery (LIB...
Silicon is regarded as one of the most promising next generation lithium-ion battery anodes due to i...
To develop high-capacity Li-ion batteries, volume expansion and material degradation of Si anodes ha...
Silicon is regarded as one of the most promising next generation lithium-ion battery anodes due to i...