Graphitic carbon is currently considered the state-of-the-art material for the negative electrode in lithium ion cells, mainly due to its high reversibility and low operating potential. However, carbon anodes exhibit mediocre charge/discharge rate performance, which contributes to severe transport-induced surface structural damage upon prolonged cycling and limits the lifetime of the cell. Lithium bulk diffusion in graphitic carbon is not yet completely understood, partly due to the complexity of measuring bulk transport properties in finite-sized nonisotropic particles. To solve this problem for graphite, we use the Devanathan−Stachurski electrochemical methodology combined with ab initio computations to deconvolute and quantify the mechan...
The structure of carbon material comprising the anode is the key to the performance of a lithium ion...
Graphite is used as a state-of-the-art anode in commercial lithium-ion batteries (LIBs) due to its h...
Lithium-ion batteries with superior capacities and rate performance are needed due to the soaring de...
Graphitic carbon is currently considered the state-of-the-art material for the negative electrode in...
Graphitic carbon is currently considered the state-of-the-art material for the negative electrode in...
ABSTRACT Graphitic carbon is currently considered the state-of-the-artmaterial for the negative elec...
ABSTRACT Graphitic carbon is currently considered the state-of-the-artmaterial for the negative elec...
Coexistence of both edge plane and basal plane in graphite often hinders the understanding of lithiu...
Fast charging of lithium-ion cells often causes capacity loss and limited cycle life, hindering thei...
number of pages, 153 number of references, 275In this thesis work, carbon-based nanomaterials using ...
number of pages, 153 number of references, 275In this thesis work, carbon-based nanomaterials using ...
Although graphite-based composite electrodes currently are widely used as negative electrodes in lit...
Although graphite-based composite electrodes currently are widely used as negative electrodes in lit...
A complex impedance model for spherical particles was used to determine the lithium ion diffusion co...
A complex impedance model for spherical particles was used to determine the lithium ion diffusion co...
The structure of carbon material comprising the anode is the key to the performance of a lithium ion...
Graphite is used as a state-of-the-art anode in commercial lithium-ion batteries (LIBs) due to its h...
Lithium-ion batteries with superior capacities and rate performance are needed due to the soaring de...
Graphitic carbon is currently considered the state-of-the-art material for the negative electrode in...
Graphitic carbon is currently considered the state-of-the-art material for the negative electrode in...
ABSTRACT Graphitic carbon is currently considered the state-of-the-artmaterial for the negative elec...
ABSTRACT Graphitic carbon is currently considered the state-of-the-artmaterial for the negative elec...
Coexistence of both edge plane and basal plane in graphite often hinders the understanding of lithiu...
Fast charging of lithium-ion cells often causes capacity loss and limited cycle life, hindering thei...
number of pages, 153 number of references, 275In this thesis work, carbon-based nanomaterials using ...
number of pages, 153 number of references, 275In this thesis work, carbon-based nanomaterials using ...
Although graphite-based composite electrodes currently are widely used as negative electrodes in lit...
Although graphite-based composite electrodes currently are widely used as negative electrodes in lit...
A complex impedance model for spherical particles was used to determine the lithium ion diffusion co...
A complex impedance model for spherical particles was used to determine the lithium ion diffusion co...
The structure of carbon material comprising the anode is the key to the performance of a lithium ion...
Graphite is used as a state-of-the-art anode in commercial lithium-ion batteries (LIBs) due to its h...
Lithium-ion batteries with superior capacities and rate performance are needed due to the soaring de...