Nanoelectromechanical Temperature Sensor Based on Piezoresistive Properties of Suspended Graphene Film

Author:

Han Shuqi12ORCID,Zhou Siyuan12,Mei Linyu23,Guo Miaoli3,Zhang Huiyi12,Li Qiannan3,Zhang Shuai3ORCID,Niu Yaokai3,Zhuang Yan12,Geng Wenping24ORCID,Bi Kaixi24ORCID,Chou Xiujian12

Affiliation:

1. School of Instrument Science and Technology, North University of China, Taiyuan 030051, China

2. Key Laboratory of National Defense Science and Technology on Electronic Measurement, School of Instrument and Electronics, North University of China, Taiyuan 030051, China

3. School of mechanical engineering, North University of China, Taiyuan 030051, China

4. School of Semiconductors and Physics, North University of China, Taiyuan 030051, China

Abstract

The substrate impurities scattering will lead to unstable temperature-sensitive behavior and poor linearity in graphene temperature sensors. And this can be weakened by suspending the graphene structure. Herein, we report a graphene temperature sensing structure, with suspended graphene membranes fabricated on the cavity and non-cavity SiO2/Si substrate, using monolayer, few-layer, and multilayer graphene. The results show that the sensor provides direct electrical readout from temperature to resistance transduction by the nano piezoresistive effect in graphene. And the cavity structure can weaken the substrate impurity scattering and thermal resistance effect, which results in better sensitivity and wide-range temperature sensing. In addition, monolayer graphene is almost no temperature sensitivity. And the few-layer graphene temperature sensitivity, lower than that of the multilayer graphene cavity structure (3.50%/°C), is 1.07%/°C. This work demonstrates that piezoresistive in suspended graphene membranes can effectively enhance the sensitivity and widen the temperature sensor range in NEMS temperature sensors.

Funder

The National Natural Science Foundation of China

Key Research and Development Project Key Program of Shanxi Province, China

General project of Natural Science Foundation of Shanxi Province

Research Project Supported by Shanxi Scholarship Council of China

Shanxi Postgraduate Education Innovation Project

Publisher

MDPI AG

Subject

General Materials Science,General Chemical Engineering

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