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Sushi-like rolled 2D heterostructures may lead to new miniaturized electronics


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IMAGE: Image of a heterotube diode: This device contains a MoS2 semiconductor shell (blue), over the insulator hBN shell (purple), over the carbon nanotube core (green) of the heteronanotube covered with.
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Credit: ELIZABETH FLORES-GOMEZ MURRAY/ PENN STATE
The recent synthesis of one-dimensional van der Waals heterostructures, a type of heterostructure made by layering two-dimensional materials that are one atom thick, may lead to new, miniaturized electronics that are currently not possible, according to a team of Penn State and University of Tokyo researchers.
Engineers commonly produce heterostructures to achieve new device properties that are not available in a single material. A van der Waals heterostructure is one made of 2D materials that are stacked directly on top of each other like Lego-blocks or a sandwich. The van der Waals force, which is an attractive force between uncharged molecules or atoms, holds the materials toge ....

Taiki Inoue , Henan Li , Shigeo Maruyama , Shohei Chiashi , Slavav Rotkin , Rong Xiang , Engineering Center , University Of Tokyo , D Crystal Consortium , Material Research Institute , Japan Ministry Of Education , Penn State , Penn State Frontier Professor , Engineering Science , Scanning Near Field Optical Microscope , Crystal Consortium , Nanoscale Science , Japan Ministry , Technology Engineering Computer Science , Electrical Engineering Electronics , தைய்கி இணௌஊே , ஹேநான் லி , றோங்க் கிஷியாங் , பொறியியல் மையம் , பல்கலைக்கழகம் ஆஃப் டோக்கியோ , ட படிக கூட்டமைப்பு ,