TY - JOUR
T1 - Photothermally actuated Ti3C2Tx MXene-GO resonator for highly sensitive humidity sensing
AU - Li, Wanting
AU - Li, Cheng
AU - Wan, Zhen
AU - Li, Jing
N1 - Publisher Copyright:
© 2026 Elsevier B.V.
PY - 2026/8/15
Y1 - 2026/8/15
N2 - In order to achieve high sensitivity in a wide measurement range for miniature humidity sensing, we developed an optical-fiber Fabry-Perot (F–P) interferometric resonant humidity sensor using a Ti3C2Tx MXene-graphene oxide (GO) composite membrane (125 μm in diameter and ∼0.61 μm in thickness) with a MXene:GO mass ratio of 2.5:1. The suspended MXene-GO composite membrane was photothermally excited to vibrate using an intensity-modulated laser, with its vibration detected via non-contact optical fiber F–P interferometric readout. Over 2∼100%RH at 25 ℃, the sensor achieves an absolute sensitivity of 2.1 kHz/%RH, corresponding to a relative sensitivity of 0.22%/%RH that is higher than those obtained by previously reported quartz crystal microbalance (QCM), surface acoustic wave (SAW), and film bulk acoustic resonator (FBAR)-based humidity sensors typically ranging from 8.4 × 10−5 to 1.89 × 10−3%/%RH. Additionally, the sensor exhibited good repeatability (2.57%), hysteresis error (6.11%), fast response/recovery time (3.61 s/5.53 s) and a maximum frequency deviation of 0.27% at 76%RH in the two-week stability test.
AB - In order to achieve high sensitivity in a wide measurement range for miniature humidity sensing, we developed an optical-fiber Fabry-Perot (F–P) interferometric resonant humidity sensor using a Ti3C2Tx MXene-graphene oxide (GO) composite membrane (125 μm in diameter and ∼0.61 μm in thickness) with a MXene:GO mass ratio of 2.5:1. The suspended MXene-GO composite membrane was photothermally excited to vibrate using an intensity-modulated laser, with its vibration detected via non-contact optical fiber F–P interferometric readout. Over 2∼100%RH at 25 ℃, the sensor achieves an absolute sensitivity of 2.1 kHz/%RH, corresponding to a relative sensitivity of 0.22%/%RH that is higher than those obtained by previously reported quartz crystal microbalance (QCM), surface acoustic wave (SAW), and film bulk acoustic resonator (FBAR)-based humidity sensors typically ranging from 8.4 × 10−5 to 1.89 × 10−3%/%RH. Additionally, the sensor exhibited good repeatability (2.57%), hysteresis error (6.11%), fast response/recovery time (3.61 s/5.53 s) and a maximum frequency deviation of 0.27% at 76%RH in the two-week stability test.
KW - Fabry-Perot interference
KW - MXene-GO composite membrane
KW - Photothermal actuation
KW - Resonant humidity sensor
UR - https://www.scopus.com/pages/publications/105035710942
U2 - 10.1016/j.snb.2026.139983
DO - 10.1016/j.snb.2026.139983
M3 - 文章
AN - SCOPUS:105035710942
SN - 0925-4005
VL - 461
JO - Sensors and Actuators B: Chemical
JF - Sensors and Actuators B: Chemical
M1 - 139983
ER -