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The optical modulation of device is 44.3% at 582 nm, which is much higher than device based on commonly used I−/I3− electrolyte.
It is found that the device with DW = 0.1 μm of Ti thermistor has ∼1.5 times higher electrical responsivity (376 V/W) at maximum allowable current than that with DW = 0.2 μm (254 V/W), which is also ∼11 times higher than device with DW = 0.1 μm of Pt thermistor.
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Anything over 10 inches is priced higher than devices with 10 inch or smaller screens.
The energy conversion efficiency of 7.91% of the DSSC based on FMS*ESs is higher than devices based on ES and FMS (7.22% and 7.24%, respectively), which also benefits from the structural advantages of the composite-HMS compared with non-composite HMSs.
This is verified with the V oc (being 1.05 V) of device with the suitable addition of Cl ions (MAI MACl = 50 5) in perovskite layer, which is higher than devices without Cl.
Obviously, the EQE of Al-doped device is higher than the device based on pristine SnO2 over the entire wavelength range.
In an additional experiment, Huang et al. embedded Au NPs (no shell) into the BHJ of the inverted device and found that the PCE of this device (2.44%) was even higher than the device with Au silica NPs.
Impressively, the devices employing VN@TiN core-sheath nanofibers CEs yield 8.98%, which is 17% higher than that device with Pt CE (7.64%).
This HD content renders at a higher quality than non-HD content, and is of much higher quality than devices that cannot play back higher bit-rate content.
Today, Android devices' data consumption is 29% higher than Apple devices in terms of megabytes used per month per connection.
Solar cells based on IL modified cp-TiO2 demonstrate efficiency of ∼6%, much higher than the devices (0.2%) fabricated using untreated cp-TiO2 as the electron transport layer.
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