Three-dimensional (3D) electrode structures have the potential to significantly improve Li-ion battery performance, including power and energy density. Due to the complexity of geometries caused by scale expansion, however, a more precise understanding of the relationship between battery physics and structures is required. In this work, a novel hybrid 3D structure is investigated to thoroughly understand the advantages of 3D structured electrodes and to provide a guideline for design optimization. Experimental observation from an extrusion-based 3D structure is incorporated into a 3D electrochemical model, based on porous theory, with a 4th order approximation for solid phase concentration. This systematic study has been focused on the impa...
Despite the enormous potential of additive manufacturing in fabricating three-dimensional battery el...
Computational analysis of lithium ion batteries has been improved since Newman and et al. suggested ...
There is a growing interest in increasing the accessible capacity of Li-ion battery electrodes witho...
Optimized three-dimensional (3D) electrode architectures hold the promise of improving battery perfo...
Optimized three-dimensional (3D) electrode architectures hold the promise of improving battery perfo...
Conventional lithium-ion batteries (LIBs) are composed of planar stacks of anodes, cathodes, and sep...
A novel hybrid 3D structured electrode, with a high-aspect ratio, is fabricated via extrusion-based ...
Lithium-ion batteries are commonly modeled using a volume-averaged formulation (porous electrode the...
Lithium-ion batteries are commonly modeled using a volume-averaged formulation (porous electrode the...
High-energy and high-power-density lithium-ion batteries are promising energy storage systems for fu...
Much progress has recently been made in the development of active materials, electrode morphologies ...
The three-dimensional (3D) Li-ion battery presents an effective solution to issues affecting its two...
Lithium-ion batteries are the dominating electrochemical energy storage technology for battery elect...
The three-dimensional (3D) Li-ion battery presents an effective solution to issues affecting its two...
New hybrid 3D structure electrodes with a high aspect ratio are fabricated through extrusion-based a...
Despite the enormous potential of additive manufacturing in fabricating three-dimensional battery el...
Computational analysis of lithium ion batteries has been improved since Newman and et al. suggested ...
There is a growing interest in increasing the accessible capacity of Li-ion battery electrodes witho...
Optimized three-dimensional (3D) electrode architectures hold the promise of improving battery perfo...
Optimized three-dimensional (3D) electrode architectures hold the promise of improving battery perfo...
Conventional lithium-ion batteries (LIBs) are composed of planar stacks of anodes, cathodes, and sep...
A novel hybrid 3D structured electrode, with a high-aspect ratio, is fabricated via extrusion-based ...
Lithium-ion batteries are commonly modeled using a volume-averaged formulation (porous electrode the...
Lithium-ion batteries are commonly modeled using a volume-averaged formulation (porous electrode the...
High-energy and high-power-density lithium-ion batteries are promising energy storage systems for fu...
Much progress has recently been made in the development of active materials, electrode morphologies ...
The three-dimensional (3D) Li-ion battery presents an effective solution to issues affecting its two...
Lithium-ion batteries are the dominating electrochemical energy storage technology for battery elect...
The three-dimensional (3D) Li-ion battery presents an effective solution to issues affecting its two...
New hybrid 3D structure electrodes with a high aspect ratio are fabricated through extrusion-based a...
Despite the enormous potential of additive manufacturing in fabricating three-dimensional battery el...
Computational analysis of lithium ion batteries has been improved since Newman and et al. suggested ...
There is a growing interest in increasing the accessible capacity of Li-ion battery electrodes witho...