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Another two MQW structure WOLEDs have low efficiencies compared to device A, even lower than that of the reference device.
Water-covered endurance characteristics of devices made with nanorod layer exhibit superior switching performance as compared to device without nanorods layer, shown in Fig. 17b, d, respectively [256].
This is likely due to the criticality and widespread usage of the kernel compared to device drivers, many of which are of interest to only a small portion of the Linux global user base.
Device A, which is driven by single S-shaped PZT cantilever actuator, performs better in both dc and ac laser scanning compared to device B, which is driven by double S-shaped PZT actuator.
Meanwhile, the series resistance of device based on low-temperature carbon electrode can be reduced from 21to1313 Ω cm2, compared to device based on high temperature carbon electrode only.
Semi-empirical calculations are performed on each compound to predict its efficacy as a host material, and these theoretical predictions are compared to device performance for each compound, in an attempt to verify the model.
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Devices using silicon oxide are compared to devices using amorphous silicon as antenna substrate.
In both cases, the mobility of graphene increased several-fold, as compared to devices on bare SiO2.
As a result, the power conversion efficiency of such devices was improved compared to devices with bare ITO.
Bottom-emitting organic diode devices with polymeric anode were fabricated and their performances were compared to devices with different anodes.
Furthermore, devices with these fullerene ETLs showed significant improvements in power conversion efficiency (PCE) compared to devices with PCBM ETLs.
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