4.6 Article

A Fast Response - Recovery 3D Graphene Foam Humidity Sensor for User Interaction

Journal

SENSORS
Volume 18, Issue 12, Pages -

Publisher

MDPI
DOI: 10.3390/s18124337

Keywords

three-dimensional graphene foams; humidity sensor; fast response; user interaction

Funding

  1. National Natural Science Foundation of China [61675147, 61605141, 61735010]
  2. Basic Research Program of Shenzhen [JCYJ20170412154447469]
  3. Wenzhou City Governmetal Public Industrial Technology Project [G20160014]

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Humidity sensors allow electronic devices to convert the water content in the environment into electronical signals by utilizing material properties and transduction techniques. Three-dimensional graphene foam (3DGF) can be exploited in humidity sensors due to its convenient features including low-mass density, large specific surface area, and excellent electrical. In this paper, 3DGF with super permeability to water enables humidity sensors to exhibit a broad relative humidities (RH) range, from 0% to 85.9%, with a fast response speed (response time: similar to 89 ms, recovery time: similar to 189 ms). To interpret the physical mechanism behind this, we constructed a 3DGF model decorated with water to calculate the energy structure and we carried out the CASTEP as implemented in Materials Studio 8.0. This can be ascribed to the donor effect, namely, the electronic donation of chemically adsorbed water molecules to the 3DGF surface. Furthermore, this device can be used for user interaction (UI) with unprecedented performance. These high performances support 3DGF as a promising material for humidity sensitive material.

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