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How to cite this article: Kim, K. H. et al. Apparent Power Law Scaling of Variable Range Hopping Conduction in Carbonized Polymer Nanofibers.
We analyze our experimental data in the framework of variable range hopping and argue that this mechanism can explain transport properties of pristine polymer nanofibers as well.
Activation of variable range hopping (VRH) occurred at lower temperatures than that for temperature fluctuation induced tunneling (TFIT).
The experimental data obtained for the ternary mixture have been compared to the predictions obtained with the statistical associating fluid theory for potentials of variable range (SAFT-VR).
The optimal balance is trying to find models with an acceptable interpretation capacity and with good ability to fit the data on the boundaries of variable range.
Vapor liquid equilibrium calculations are performed using the statistical associating fluid theory for potentials of variable range (Mac Dowell et al., Ind Eng Chem Res 49 1883 1899, 2010).
Electrical transport through polymer nanofibers including such power law dependence can be explained, within some limited range of T and V, in the framework of variable range hopping (VRH 8, fluctuation induced tunneling (FIT 9, electric field induced tunneling10,11,12, manifestation of Luttinger liquid (LL) and environmental Coulomb blockade (ECB 6,7.
Here we apply the group contribution based statistical associating fluid theory for potential of variable range (GC-SAFT-VR) equation of state to the study of long chain fatty acid methyl esters that comprise biodiesel fuels.
A rate-based model of chemisorption units for CO2 capture is implemented in the gPROMS modelling environment, using the statistical associating fluid theory for potentials of variable range (SAFT-VR 1 SAFT-VR 1entomixturepresentdynamixture
A non-equilibrium simplex simulated annealing algorithm is applied as a global optimization method to parameter optimization for an equation of state based on the generalized statistical associating fluid theory incorporating potentials of variable range.
In terms of variable range, both technologies cover around 40 dB from the minimum to the maximum measured value.
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