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Research Could Open Up a New Route for the Realization of High-Mobility Organic Optoelectronics

Semiconductor electronic devices can be made of either inorganic crystals, formed by the strong bonding of atoms and ions, or organic crystals, which demonstrate weaker bonds held together by van der Waals forces (weak electric forces of attraction between neutral atoms or molecules that do not share a chemical bond).

Nanotechnology Now - Press Release: Towards high-performance organic optoelectronics with better crystallinity at semiconductor interface: Organic molecular interfaces with minimized structural mismatch and spontaneous electron transfer could open doors to high-efficiency optoelectronics

Nanotechnology Now - Press Release: Towards high-performance organic optoelectronics with better crystallinity at semiconductor interface: Organic molecular interfaces with minimized structural mismatch and spontaneous electron transfer could open doors to high-efficiency optoelectronics
nanotech-now.com - get the latest breaking news, showbiz & celebrity photos, sport news & rumours, viral videos and top stories from nanotech-now.com Daily Mail and Mail on Sunday newspapers.

Towards High-performance Organic Optoelectronics with Better Crystallinity at Semiconductor Interface

Organic semiconductors have garnered much attention in optoelectronics owing to their flexibility, which is allowed by weak interaction forces. However, this also makes for poor charge carrier mobility. In a new study, researchers from Japan combined organic semiconductor molecules with similar structures to produce interfaces with better crystal quality and charge transport efficiency, paving the…

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