Exact(8)
Observed differences in surface morphology of organic overlayer could be caused by different substrate doping.
Controlling microstructure and thin film morphology of organic semiconductors by supramolecular arrangement is critical to improving their device performance.
The surface morphology of these prepared ITO directly affects the morphology of organic thin films, because all the organic thin films are deposited on ITO.
R-SoXS has been used to study the morphology of organic photovoltaics, organic thin film transistors, biological systems, and block copolymer engineering applications.
In this study, the impact of secondary sorption of hydrocarbons on the interlayer morphology of organic surfactant modified montmorillonites was studied.
Although organic nanofibers show more advantages in ER properties compared to the conventional granular ones, controlling the morphology of organic nanofibers in the preparation is more difficult compared to inorganic nanofibers.
For instance, morphology of organic molecules can be easily influenced by the tip shape that has comparable dimensions to the molecules [18] and by the forces exerted by the tip in both contact mode (CM) and tapping mode (TM) measurements [4, 12, 19].
In the present work, the morphology of organic microcrystals can be reversibly transformed between three-dimensional microprism and two-dimensional hexangular microflake by external acid base vapor stimuli, which is accompanied by the reversible phosphorescent color and near-infrared (NIR) absorption intensity transformation.
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