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2D Semiconductors Make Progress, But Slowly

2D Semiconductors Make Progress, But Slowly
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Yuanyuan Shi , Aravindh Kumar , Shi Imec , Kevin Obrien , Xiangyu Wu , Ang Sheng Chou , Manoj Tripathi , Nanomechanical Properties , University Of Sussex , International Electron Devices Meeting , D Semiconductor Transistors , Device Meeting , Kevino Brien , Electron Devices Meeting , Interface Engineering , Defects Modulate Electronic , High Performancen Type , Semiconductor Transistors ,

Graphene "Nano-Origami" Creates Tiniest Microchips Yet | Printed Electronics World


The tiniest microchips yet can be made from graphene and other 2D-materials, using a form of nano-origami , physicists at the University of Sussex have found. This is the first time any researchers have done this, and it is covered in a paper published in the ACS Nano journal.
 
By creating kinks in the structure of graphene, researchers at the University of Sussex have made the nanomaterial behave like a transistor, and have shown that when a strip of graphene is crinkled in this way, it can behave like a microchip, which is around 100 times smaller than conventional microchips. For further information see the IDTechEx report on Graphene Market & 2D Materials Assessment 2021-2031. ....

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Graphene "nano-origami" Creates Tiniest Microchips Yet


Graphene “nano-origami” Creates Tiniest Microchips Yet
Written by AZoNanoFeb 16 2021
The tiniest microchips yet can be made from graphene and other 2D-materials, using a form of ‘nano-origami’, physicists at the University of Sussex have found.
Laser induced fabrication of graphene kink (blisters) in the form of desired pattern as U S. Image Credit: University of Sussex
This is the first time any researchers have done this, and it is covered in a paper published in the 
By creating kinks in the structure of graphene, researchers at the University of Sussex have made the nanomaterial behave like a transistor, and have shown that when a strip of graphene is crinkled in this way, it can behave like a microchip, which is around 100 times smaller than conventional microchips.   ....

Alan Dalton , Manoj Tripathi , Nanomechanical Properties , University Of Sussex , Research Fellow In Materials , School Of Mathematical , Physics Sciences , Research Fellow , Nano Structured Materials , Defects Modulate Electronic , ஆலன் டால்டன் , மனோஜ் திரிபாதி , பல்கலைக்கழகம் ஆஃப் சசெக்ஸ் , ஆராய்ச்சி சக இல் பொருட்கள் , பள்ளி ஆஃப் கணித , இயற்பியல் அறிவியல் , ஆராய்ச்சி சக , நானோ கட்டமைக்கப்பட்ட பொருட்கள் ,