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A significant improvement in device efficiency has been observed on blending CZAS NCs in photoactive layer.
Enhanced electroluminescence (EL) and quantum efficiency has been observed by incorporating small amount of dye.
The maximum efficiency has been observed with the cells for light wavelength about 600 nm.
Devices without CZAS NCs exhibited 1.72% whereas on incorporation of CZAS NCs 3.25% device efficiency has been observed.
In addition, experimental evidence of a strong correlation between the total number of airfoils and the turbine efficiency has been observed.
Meanwhile, a significant improvement in the computational efficiency has been observed for the CLS new model compared with the old model, with a speedup of at least 1.70.
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Differences in the diffusion efficiency have been observed as a function of the hard block length and number of blocks.
Photoenhanced luminescence and higher quantum efficiency have been observed in ZnS Mn/Zn(OH 2 nanoparticle.
Compared with a restriction digest, up to 40% of all fragments could be cloned directly, with only marginal improvements in cloning efficiency having been observed upon prior end repair with Klenow, T4 polymerase or T4 polynucleotide kinase.
Similar computational sacrifices in favor of energetic efficiency have been observed elsewhere in the brain.
With both material suspensions, higher quantum efficiencies have been observed when lower radiation fluxes and higher cyanide concentrations are used.
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