Electrochemical strain microscopy (ESM) is a scanning probe microscopy (SPM) method in which the local electrodiffusion is probed via application of AC voltage to the SPM tip and registration of resulting electrochemical strain. Here, we implemented ESM to measure local strain in bulk LiMn2O4 cathodes of a commercial Li-battery in different states of charge to investigate distribution of Li-ion mobility and concentration. Ramped AC ESM imaging and voltage spectroscopy were used to find the most reliable regime of measurements allowing separating and diminishing different contributions to ESM. This is not a trivial task due to complex geometry of the sample and various obstacles resulting in less predictable contributions of different origin...
Scanning electrochemical cell microscopy (SECCM) facilitates single particle measurements of battery...
Scanning electrochemical cell microscopy (SECCM) facilitates single particle measurements of battery...
The work was financially supported by Russian Science Foundation (Grant 17-72-10144). The equipment ...
Electrochemical strain microscopy (ESM) is a scanning probe microscopy (SPM) method in which the lo...
The work was financially supported by the Portuguese Foundation for Science and Technology (FCT) wit...
Transport properties of Li+ mobile ions in fresh and aged LiMn2O4 battery cathodes were studied at t...
Electrochemical Strain Microscopy (ESM) can provide useful information on ionic diffusion in solids ...
In this contribution, a correlative confocal Raman and scanning probe microscopy approach was implem...
In this discussion, electrochemical strain microscopy (ESM) as a power tool to probe electrochemistr...
The work was financially supported by Russian Science Foundation (Grant 17-72-10144). The equipment ...
In this contribution, a correlative confocal Raman and scanning probe microscopy approach was implem...
Electrochemical strain microscopy (ESM) is a distinguished method to characterize Li-ion mobility in...
Atomistic and nanometer scale mechanisms of electrochemical reactions and ionic flows in solids in t...
Correlative microscopy has been used to investigate the relationship between Li-ion conductivity and...
Correlative microscopy has been used to investigate the relationship between Li-ion conductivity and...
Scanning electrochemical cell microscopy (SECCM) facilitates single particle measurements of battery...
Scanning electrochemical cell microscopy (SECCM) facilitates single particle measurements of battery...
The work was financially supported by Russian Science Foundation (Grant 17-72-10144). The equipment ...
Electrochemical strain microscopy (ESM) is a scanning probe microscopy (SPM) method in which the lo...
The work was financially supported by the Portuguese Foundation for Science and Technology (FCT) wit...
Transport properties of Li+ mobile ions in fresh and aged LiMn2O4 battery cathodes were studied at t...
Electrochemical Strain Microscopy (ESM) can provide useful information on ionic diffusion in solids ...
In this contribution, a correlative confocal Raman and scanning probe microscopy approach was implem...
In this discussion, electrochemical strain microscopy (ESM) as a power tool to probe electrochemistr...
The work was financially supported by Russian Science Foundation (Grant 17-72-10144). The equipment ...
In this contribution, a correlative confocal Raman and scanning probe microscopy approach was implem...
Electrochemical strain microscopy (ESM) is a distinguished method to characterize Li-ion mobility in...
Atomistic and nanometer scale mechanisms of electrochemical reactions and ionic flows in solids in t...
Correlative microscopy has been used to investigate the relationship between Li-ion conductivity and...
Correlative microscopy has been used to investigate the relationship between Li-ion conductivity and...
Scanning electrochemical cell microscopy (SECCM) facilitates single particle measurements of battery...
Scanning electrochemical cell microscopy (SECCM) facilitates single particle measurements of battery...
The work was financially supported by Russian Science Foundation (Grant 17-72-10144). The equipment ...