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Fractality in the neuron axonal topography of the human brain based on 3-D diffusion MRI
Authors:P Katsaloulis  A Ghosh  AC Philippe  A Provata  R Deriche
Institution:1. Plasma Physics Research Center, Science and Research Branch, Islamic Azad University, 14778-93855, Tehran, Iran
2. Department of Physics, Tarbiat Moallem University, 31979-37551, Karaj, Iran
3. Young Researchers Club, Kermanshah Branch, Islamic Azad University, 67189-97551, Kermanshah, Iran
Abstract:We report our results on the effect of incorporation of inorganic fullerene like nanoparticles (IF) and inorganic nanotubes (INT) of WS2 into hybrid LED device structures. To disperse into a uniform fashion, the semiconducting INT/IF WS2 NTs were functionalized with SDS (sodium dodecylsulphate). The IF/INT WS2 nanotubes were used in combination with PEDOT:PSS and P3HT to realize the following LED device structures: ITO/(PEDOT:PSS):(WS2:SDS)/P3HT/LiF-Al; ITO/PEDOT:PSS/P3HT/WS2:SDS/LiF-Al. Morphological, optical and electrochemical analysis were performed to obtain the HOMO and the LUMO energy levels to hypothesize the most efficient device structure. The spectral positions of the electroluminescent bands were found out to be device-dependent and exhibits blue shift when the proposed nanostructure is dip coated on top of P3HT. Electro-optical analysis indicate that the WS2:SDS based P3HT/semiconductor film can improve the charge recombination probability owing to its dual functionality as hole blocking layer and electron injection moiety.
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