Stable multicomponent multiphase all active material lithium-ion battery anodes

C Cai, L Gao, T Sun, GM Koenig Jr - ACS Applied Materials & …, 2023 - ACS Publications
Due to their high energy density, lithium-ion batteries have been the state-of-the-art energy
storage technology for many applications. Energy density can be further improved by …

Unveiling low-tortuous effect on electrochemical performance toward ultrathick LiFePO4 electrode with 100 mg cm− 2 area loading

S Li, R Xiong, Z Han, R He, S Li, H Zhou, C Yu… - Journal of Power …, 2021 - Elsevier
Thickening electrodes can significantly increase the energy density and reduce the cost of
batteries. However, the electrochemical performance of thick electrodes is limited by the …

Simulated discharge overpotential distributions for sintered electrode batteries in rechargeable coin cell form factors

C Cai, D Hensley, GM Koenig Jr - Journal of Energy Storage, 2022 - Elsevier
Sintered electrode lithium-ion batteries contain only electroactive material which has
undergone a mild thermal treatment to improve particle connectivity and thus electrode …

Pore microstructure impacts on lithium ion transport and rate capability of thick sintered electrodes

Z Nie, R Parai, C Cai, C Michaelis… - Journal of The …, 2021 - iopscience.iop.org
Increasing electrode thickness is one route to improve the energy density of lithium-ion
battery cells. However, restricted Li+ transport in the electrolyte phase through the porous …

Investigating dopants to improve sintered LiMn2O4 spinel electrode electrochemical cycling limitations

C Cai, GM Koenig Jr - Electrochimica Acta, 2022 - Elsevier
Lithium-ion batteries have become prevalent for portable energy storage. Towards
continuing to increase the energy density of batteries, engineering the electrode structure …

Increased cycling rates for thick all active material electrodes via electrolyte modifications

C Cai, D Yost, GM Koenig Jr - Journal of Energy Storage, 2023 - Elsevier
Abstract Lithium-ion (Li-ion) batteries are the dominant energy storage technology in many
applications due to high energy and power density, and research efforts continue towards …

High capacity rechargeable coin cells using all active material electrodes and percolated networks of LiCoO2 blended with LiNi0. 8Co0. 15Al0. 05O2

C Cai, D Hensley, GM Koenig Jr - Journal of Alloys and Compounds, 2023 - Elsevier
Lithium-ion batteries have become a popular rechargeable energy storage technology due
to high volumetric and gravimetric energy density. One route to increase energy density at …

Enhancing low electronic conductivity materials in all active material electrodes through multicomponent architecture

C Cai, GM Koenig - Energy Advances, 2023 - pubs.rsc.org
Lithium-ion batteries are used in many applications due to their high volumetric and
gravimetric energy density. One general route to increase cell level battery energy density is …

Processing temperature impact on TiNb2O7 thick all active material lithium-ion battery electrodes

C Cai, GM Koenig - Journal of The Electrochemical Society, 2023 - iopscience.iop.org
Lithium-ion batteries have become a widespread energy storage technology, and research
continues towards improving battery properties. One route to increase electrode areal active …

Combining Ester Solvent-Containing Electrolytes with All-Active Material Electrodes for High Current Density Lithium-Ion Batteries

C Cai, B Min, D Yost, GM Koenig Jr - ACS Applied Energy …, 2023 - ACS Publications
Lithium (Li)-ion batteries are a leading rechargeable energy storage technology due to their
high volumetric and gravimetric energy density. Increasing the electrode thickness is one …