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Engineered ion channels enable manipulation of cellular function by selective chemical control of ionic conductance.
for which N A is Avogadro's number and is the limiting ionic conductance.
The ionic conductance and electrochemical properties of the gel films were examined.
The ionic conductance and electrochemical properties of the gel films were investigated.
The ionic conductance behavior of the polymeric electrolyte was investigated as solid Mg2+-ion conductors.
As the PVDF-HFP electrolyte had a relatively soft contact property with higher ionic conductance, the cell performance was improved.
The DRS data were also presented as complex impedance Z which emphasises changes of ionic conductance during reaction.
However, the nature of the ionic conductance changes leading to the massive but transitory neuronal depolarization underlying CSD has not yet been define[4].
It is known that when the electric double layers (EDLs) overlap, the ionic conductance in a nanochannel depends substantially on its surface charge property.
The idea of nano-structure control was firstly successfully used to prepare a nano-granular film with high ionic conductance and good electroehromic performance.
Ionic conductance of the RCM, however, was about 2.5 times higher than that of Nafion 115®, due to a low thickness and EW of RCM.
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