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The use of environmental friendly solvents for the fabrication of solution processed organic photovoltaics is a key issue to scale up the technology.
The good solubility of AnTP even without any alkyl substituent allowed solution coating of AnTP based emitting layer and fabrication of solution processed blue fluorescent organic light-emitting diodes with a current efficiency of 3.7 cd/A.
We have used these small molecules as electron donor along with the [6,6]-phenyl C60 butyric acid methyl ester or [6,6]-phenyl C71 butyric acid methyl ester as electron acceptor for the fabrication of solution processed organic bulk heterojunction solar cells.
The compounds T2 and T3 were used as active materials for the fabrication of solution processed, single layer blue light emitting diodes, with low turn-on voltage (2 3.3 V) and Commission Internationale de l'éclairage (CIE) coordinates corresponding to (0.16, 0.23) and (0.17, 0.36) for T2 and T3, respectively.
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The optimization of the substrate vibration-assisted co-spray process is currently under further investigation, due to its simplicity and compatibility with large-scale fabrication of solution-processed solar cells.
The fabrication of solution-processed nontoxic mesoporous Bi2S3 structures is demonstrated and the suitability of these structures for use in hybrid solar cells investigated.
The characteristics of ZnO in terms of electron injection and transport were investigated, and then we employed ZnO as the electron injection layer via inkjet-printing during the fabrication of all-solution-processed, n-type OFETs.
This allows the fabrication of simple solution-processed bilayer organic solar cells, where an electron acceptor fullerene layer is coated from the orthogonal solvent chlorobenzene onto an underlying polyelectrolyte electron donor layer.
In this paper, we report the design and fabrication of all-solution-processed WQLEDs using a trichromatic hybrid with red, green, and blue (RGB -emitting colloidal QDs and a blue-emitting homopolymeRGB -emittingiocolloidalenyl-2,7-diyl]-end capped with N,N-Bis(4-methylphenyl)-aniline, ADS329BE) in the device emission region.
In the fabrication of MEMS, alkaline solution (e.g. potassium hydroxide (KOH), tetramethylammonium hydroxide (TMAH), etc).
Furthermore, the IAcC is readily dispersible in various polar solvents, allowing the fabrication of electrodes via solution processing.
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