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The table includes the values of conductance obtained with their standard deviation.
Values of conductance were at the level of 5 × 10−5 W/K at a mean temperature of 6 K.
We can observe that the monomer values of conductance are in the range 1.20G0 to 0.76G0, with an average value of 0.97G0.
These results indicate that, on average, dimers and monomers have similar values of conductance while double contacts have significantly larger conductance values.
The values of conductance and current in our methods are all with the interval of microsiemens and microampere orders which can now be easily distinguished by experimental apparatus.
Table 3 shows the values of conductance obtained from electronic transport calculations based on DFT for the typical first or last contacts proposed: monomer, dimer and double contacts.
Similar(47)
The huge conductive layers in our model result in a large value of conductance.
The mean value of conductance (G pore ) has been analysed of translocation events.
On account of equation (4), the value of conductance change (ΔG - ) can be calculated as ~0.6 nS.
Where, the value of conductance (G unmodified ) is ~15 nS can be obtained from I-V curves of the unmodified solid-state nanopore.
Where G max is the maximum value of conductance, and C c is the corresponding capacitance of the gate voltage at which the G max is obtained.
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