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Fig. 13 Contour plots of a SS and b I on for the proposed HG TFETs with the variation of T RTA and L spacer. Figure 13b shows extracted I on as a function of L spacer and T RTA.
c The resonance wavelength as a function of dielectric spacer thickness t 2. d Reflectivity of the resonance dip and FWHM as functions of dielectric spacer thickness t 2. Figure 4 shows influence of structure parameters on the reflectance spectrum of the proposed metamaterial structure.
I on shows similar tendency observed in SS as a function of L spacer and T RTA.
To verify the fabrication condition for the proposed HG TFETs, the effects of L spacer and T RTA have been also discussed in terms of I on and SS. Figure 13a shows extracted SS as a function of L spacer and T RTA.
Time traces of 6T emission as a function of p-6P spacer thickness are reported in Figure 6a.
The signal fractional amplitudes, Ap/(Ap+ Ad) and Ad/(Ap+ Ad), and τact are shown as a function of p-6P spacer thickness in Figure 6c and 6d, respectively.
By analyzing the PL emission of both 6T phases as a function of p-6P spacer thickness (Δ d p –6P) we have determined a critical value of Δ d p –6P ≈ 2.73 nm where interfacial 6T runs into saturation and the surplus of 6T starts to cluster in 3-dimensional crystallites.
The distribution of all key process parameters (at both flow compartments, throughout the membrane envelop) can be predicted, as a function of the membrane sheet and the spacers geometrical characteristics; thus the new simulator is most appropriate for module design optimization, parametric studies and other applications.
In this study, LCD was measured in an electrodialysis flow cell system of given geometry and spacer configuration as a function of the linear velocity.
A three-regime correlation is developed for the excess bend loss coefficient as a function of Reynolds number, aspect ratios, curvature ratios and spacer lengths between the channels.
Figure 2 Short-circuit current ( J sc ) as a function of thicknesses of both layers, the photoactive layer and the optical spacer (ZnO).
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