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Updated: May 20, 2025

Scanning-probe Single-electron Capacitance Spectroscopy
Published on: July 30, 2013
Two Layers of Carbon Atoms Enable Ultrasensitive Detection of Acceleration
Jie Ding1, Hongliang Ma1,2,3, Chang He2,3
1School of Integrated Circuits and Electronics, Beijing Institute of Technology, Beijing 100081, China.
Abstract:
Graphene is a promising material in nanoelectromechanical systems and sensors. Here, we applied suspended two layers of carbon atoms with an attached SiO2/Si proof mass that is more than 30000 times heavier than the springs made of two layers of carbon atoms for sensing acceleration and found enhanced electromechanical coupling transduction. As a result, devices based on two layers of carbon atoms have at least 3 orders of magnitude higher sensitivity per proof mass volume and at least 3 orders of magnitude smaller proof mass volume than state-of-the-art silicon piezoresistive accelerometers. These findings demonstrate atomically thin layers of carbon atoms have the potential to realize the ultrasmall and ultrasensitive nanoelectromechanical devices that are highly demanded for many emerging applications such as biomedical implantable systems, medical micro/nanorobots in precision medicine, and wearable devices.
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