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The field size in the surface of the phantom was 1.0×1.0 cm2 and a source-surface distance (SSD) of 100 cm.
Dark IV measurements showed a turn on-voltage of approximately 3.2 V, specific-on-resistance of 15.1 mΩ cm2 and a reverse leakage current of −0.14 matcm2 at −10 V.
These performance parameters were for TiN BASE electrodes characterized by B=75 A K1/2/m2 Pa and G=50, assuming a BASE/electrode contact resistance of 0.06 Ω cm2 and a BASE braze structure leakage resistance of 3 Ω.
Under the optimal experimental condition, the constructed glucose biosensor showed a good linearly relationship between the concentration of glucose and the electrochemical current, a high sensitivity of 61.78 μA/mM cm2, and a fast response time of <5 s.
A field size of 10×10 cm2 and a 15 MV photon beam were considered in the simulation.
Sensor type 4,000 was used, which has 572 sensing elements on a surface of 28 × 33 mm (62 sensing elements per cm2), and a column and row width of 1.27 mm.
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The electrical characterisation shows good properties with a forward current above 104 andm2 and a rectifying ratio of 105.
The conditions for obtaining a current density of several A/cm2 and a stable working point are studied and realized.
The photovoltaic device based on PBDT-TTBTT PC71BM PBDT-TTBTT PC71BM.15 mA/cm2 and a PCE of 3.54%.
An apparent standard current density of 12 μandm2 and a charge-transfer coefficient of 0.29 have been determined.
The crystals had a remnant polarization 16 μc/cm2, a spontaneous polarization 22.1 μc/cm2, and a coercive field 2.55 kV/cm.
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