Department of Chemistry, Massachusetts Institute of Technology, 77 Massachusetts Avenue, Cambridge, MA, 02139, USA.
Institute of Advanced Composite Materials, Korea Institute of Science and Technology (KIST), 92 Chudong-ro, Bongdong-eup, Wanju-gun, Jeonrabuk-do, 565-905, Republic of Korea.
Small. 2018 Mar;14(13):e1703934. doi: 10.1002/smll.201703934. Epub 2018 Feb 14.
Humidity sensors are essential components in wearable electronics for monitoring of environmental condition and physical state. In this work, a unique humidity sensing layer composed of nitrogen-doped reduced graphene oxide (nRGO) fiber on colorless polyimide film is proposed. Ultralong graphene oxide (GO) fibers are synthesized by solution assembly of large GO sheets assisted by lyotropic liquid crystal behavior. Chemical modification by nitrogen-doping is carried out under thermal annealing in H (4%)/N (96%) ambient to obtain highly conductive nRGO fiber. Very small (≈2 nm) Pt nanoparticles are tightly anchored on the surface of the nRGO fiber as water dissociation catalysts by an optical sintering process. As a result, nRGO fiber can effectively detect wide humidity levels in the range of 6.1-66.4% relative humidity (RH). Furthermore, a 1.36-fold higher sensitivity (4.51%) at 66.4% RH is achieved using a Pt functionalized nRGO fiber (i.e., Pt-nRGO fiber) compared with the sensitivity (3.53% at 66.4% RH) of pure nRGO fiber. Real-time and portable humidity sensing characteristics are successfully demonstrated toward exhaled breath using Pt-nRGO fiber integrated on a portable sensing module. The Pt-nRGO fiber with high sensitivity and wide range of humidity detection levels offers a new sensing platform for wearable humidity sensors.
湿度传感器是可穿戴电子产品中监测环境条件和物理状态的重要组成部分。在这项工作中,提出了一种独特的湿度传感层,由无色聚酰亚胺薄膜上的氮掺杂还原氧化石墨烯(nRGO)纤维组成。通过大 GO 片的溶致液晶行为辅助的溶液组装合成超长 GO 纤维。通过在 H(4%)/N(96%)环境中的热退火进行化学改性,以获得高导电性的 nRGO 纤维。非常小的(≈2nm)Pt 纳米颗粒通过光学烧结过程作为水离解催化剂紧密锚定在 nRGO 纤维的表面上。结果,nRGO 纤维可以有效地检测 6.1-66.4%相对湿度(RH)范围内的宽湿度水平。此外,与纯 nRGO 纤维的灵敏度(在 66.4%RH 下为 3.53%)相比,使用 Pt 功能化的 nRGO 纤维(即 Pt-nRGO 纤维)在 66.4%RH 时可实现灵敏度提高 1.36 倍(4.51%)。使用集成在便携式感测模块上的 Pt-nRGO 纤维成功地演示了对呼出的呼吸的实时和便携式湿度感测特性。具有高灵敏度和宽湿度检测水平的 Pt-nRGO 纤维为可穿戴湿度传感器提供了新的感测平台。