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Undoped SnOx films, 90 nm average thick, deposited at rf power range of 60 70 W are nanocrystalline, show a conductive behaviour, an average visible transmittance of ≥ 80% and a maximum electrical conductivity of about 34.6 (Ω cm)− 1.
Iodine vapor-doped polymer P-DEACIMP gave the maximum electrical conductivity.
In the present study, maximum electrical conductivity was recorded in the summer months and minimum in monsoon months.
The pure PANI thus synthesized exhibited the maximum electrical conductivity 5.6 Scm−1.
The synthesis procedure was optimized to yield the PANI with maximum electrical conductivity.
A maximum electrical conductivity of around 250 S/cm at 800 °C is obtained when LSM-R specimen is sintered at 1200 °C/2 h.
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The maximum electrical conductivities achieved were 10−4 S cm−1 for BF3-doped and for I2-doped QPVI.
The maximum electrical conductivities of EBCO-CGO materials reach 28-77 S cm−1 with the change of CGO weight ratio from 40 wt.
Based on this correlation, the maximum (true) electrical conductivity of the composite samples at a given concentration for infinite pressure can be revealed by extrapolation.
Their dependence on the electrolyte concentration was well explained by the existence of a maximum in the rate of oxide dissolution in an open circuit at a specific concentration, of a maximum in the electrical conductivity at another specific concentration, and of some resulting slight changes of the temperature inside the pores and oxide bulk during anodization.
50 wt% EG composite shows a maximum value of electrical conductivity ∼147 S/cm and thermal stability ∼350 °C.
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