Poly(2-alkyl-2-oxazoline) electrode interlayers for improved n-type organic field effect transistor performance
Applied Physics Letters AIP Publishing 115:14 (2019) 143302
LightâEmitting Transistors Based on SolutionâProcessed Heterostructures of SelfâOrganized MultipleâQuantumâWell Perovskite and MetalâOxide Semiconductors
Advanced Electronic Materials Wiley 5:7 (2019)
Nano-crater morphology in hybrid electron-collecting buffer layers for high efficiency polymer:nonfullerene solar cells with enhanced stability
Nanoscale Horizons Royal Society of Chemistry (RSC) 4:2 (2019) 464-471
Fully solutionâprocessed photonic structures from inorganic/organic molecular hybrid materials and commodity polymers
Advanced Functional Materials Wiley 29:21 (2019) 1808152
Abstract:
Managing the interference effects from thin (multiâ)layers allows for the control of the optical transmittance/reflectance of widely used and technologically significant structures such as antireflection coatings (ARCs) and distributed Bragg reflectors (DBRs). These rely on the destructive/constructive interference between incident, reflected, and transmitted radiation. While known for over a century and having been extremely well investigated, the emergence of printable and largeâarea electronics brings a new emphasis: the development of materials capable of transferring wellâestablished ideas to a solutionâbased production. Here, demonstrated is the solutionâfabrication of ARCs and DBRs utilizing alternating layers of commodity plastics and recently developed organic/inorganic hybrid materials comprised of poly(vinyl alcohol) (PVAl), crossâlinked with titanium oxide hydrates. Dipâcoated ARCs exhibit an 88% reduction in reflectance across the visible compared to uncoated glass, and fully solutionâcoated DBRs provide a reflection of >99% across a 100 nm spectral band in the visible region. Detailed comparisons with transfermatrix methods (TMM) highlight their excellent optical quality including extremely low optical losses. Beneficially, when exposed to elevated temperatures, the hybrid material can display a notable, reproducible, and irreversible change in refractive index and film thickness while maintaining excellent optical performance allowing postdeposition tuning, e.g., for thermoâresponsive applications, including security features and productâstorage environment monitoring.Large-area plastic nanogap electronics enabled by adhesion lithography
npj Flexible Electronics 2:1 (2018)