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This work shows it is possible to fabricate solution processable low-voltage bottom-contact devices with performance that is similar or better than their top-contact counterparts without the addition of complex and time-consuming processing steps.
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In this work, a new deep-red heteroleptic iridium III) complex, i.e. bis[2,5-di 4-hexylthiophen-2-yl pyridine][acetylacetonate]iridium(III) [Ir(ht-5ht-py)2(acac)], has bis[2,5-di 4-hexylthiophen-2-yl pyridineo fabis[2,5-di 4-hexylthiophen-2-yl pyridine and white organic light-emitting diodes (WOLEDs).
To overcome the aforementioned challenges, we adopted alkali metal dopants focusing particularly on lithium in order to fabricate solution-processed OPVs with enhanced energy efficiency and stability.
Our results also suggest that the controlled solution casting may be a promising method in fabricating solution-processible small-molecule organic semiconductors with varied morphologies.
In addition to organic thin film transistor studies, application of NDT TTz 2 to preliminary photovoltaic devices has also been investigated by fabricating solution-processed bulk heterojunction solar cells together with PC71BM in a typical layered device structure, ITO/PEDOT PSS/NDT TTz 2 PC71BM/LiF/Al.
Liang et al. [132] employed polymer polydiacetylene (PDA) materials and flexible graphene paper and fabricated solution-processed graphene/PDA bimorph actuators, demonstrating controllable and partially reversible bending motion with fast response, activated by a low voltage.
The PLLA/SiO2-r-PDLA nanocomposites were fabricated through solution blending-injection molding process.
In this study, PEI/graphene nanoplatelet (GNP) nanocomposites were fabricated via solution processing.
The Zn B4C composite coating was fabricated from solution containing ZnSO4, B4C nanoparticles, and a surfactant.
The enzyme-treated NR/SRC (ETNR/SRC) films having different blend compositions were fabricated by solution casting technique.
The nanocomposites were fabricated by solution mixing and characterized by uniform dispersion of the nanofillers within the polymer matrix.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com