The tremendous growth of Li-ion batteries into a wide variety of applications is setting new requirements in terms of cost, energy density, safety, and power density. One route toward meeting these objectives consists in finding alternative chemistries to current cathode materials. In this Article, we describe a new class of materials discovered through a novel high-throughput ab initio computational approach and which can intercalate lithium reversibly. We report on the synthesis, characterization, and electrochemical testing of this novel lithium-carbonophosphate chemistry. This work demonstrates how the novel high-throughput computing approach can identify promising chemistries for next-generation cathode materials.X117562sciescopu
Finding new polyanionic Li-ion battery cathodes with higher capacities than LiFePO4 is currently a m...
Finding new polyanionic Li-ion battery cathodes with higher capacities than LiFePO4 is currently a m...
Finding new polyanionic Li-ion battery cathodes with higher capacities than LiFePO4 is currently a m...
The tremendous growth of Li-ion batteries into a wide variety of applications is setting new require...
Phosphate materials are being extensively studied as lithium-ion battery electrodes. In this work, w...
<i>Ab initio</i>-based high-throughput computing and screening are now being used to search and pred...
<i>Ab initio</i>-based high-throughput computing and screening are now being used to search and pred...
<i>Ab initio</i>-based high-throughput computing and screening are now being used to search and pred...
<i>Ab initio</i>-based high-throughput computing and screening are now being used to search and pred...
<i>Ab initio</i>-based high-throughput computing and screening are now being used to search and pred...
<i>Ab initio</i>-based high-throughput computing and screening are now being used to search and pred...
<i>Ab initio</i>-based high-throughput computing and screening are now being used to search and pred...
Phosphate materials are being extensively studied as lithium-ion battery electrodes. In this work, w...
The discovery of new chemistries outperforming current lithium intercalation cathodes is of major te...
Finding new polyanionic Li-ion battery cathodes with higher capacities than LiFePO4 is currently a m...
Finding new polyanionic Li-ion battery cathodes with higher capacities than LiFePO4 is currently a m...
Finding new polyanionic Li-ion battery cathodes with higher capacities than LiFePO4 is currently a m...
Finding new polyanionic Li-ion battery cathodes with higher capacities than LiFePO4 is currently a m...
The tremendous growth of Li-ion batteries into a wide variety of applications is setting new require...
Phosphate materials are being extensively studied as lithium-ion battery electrodes. In this work, w...
<i>Ab initio</i>-based high-throughput computing and screening are now being used to search and pred...
<i>Ab initio</i>-based high-throughput computing and screening are now being used to search and pred...
<i>Ab initio</i>-based high-throughput computing and screening are now being used to search and pred...
<i>Ab initio</i>-based high-throughput computing and screening are now being used to search and pred...
<i>Ab initio</i>-based high-throughput computing and screening are now being used to search and pred...
<i>Ab initio</i>-based high-throughput computing and screening are now being used to search and pred...
<i>Ab initio</i>-based high-throughput computing and screening are now being used to search and pred...
Phosphate materials are being extensively studied as lithium-ion battery electrodes. In this work, w...
The discovery of new chemistries outperforming current lithium intercalation cathodes is of major te...
Finding new polyanionic Li-ion battery cathodes with higher capacities than LiFePO4 is currently a m...
Finding new polyanionic Li-ion battery cathodes with higher capacities than LiFePO4 is currently a m...
Finding new polyanionic Li-ion battery cathodes with higher capacities than LiFePO4 is currently a m...
Finding new polyanionic Li-ion battery cathodes with higher capacities than LiFePO4 is currently a m...