November 2023

Journal

Multimodality of Structural, Electrical, and Gravimetric Responses of Intercalated MXenes to Water

By:
Muckley, Eric S; Naguib, Michael ; Wang, Hsiu-Wen ; Vlcek, Lukas ; Osti, Naresh C; Sacci, Robert L; Sang, Xiahan ; Unocic, Raymond R; Xie, Yu ; Tyagi, Madhu Sudan ; Mamontov, Eugene ; Page, Katharine L; Kent, Paul R; Nanda, Jagjit ; Ivanov, Ilia N
Journal Name:
ACS Nano
Page Number:
11118-11126
Volume:
11
Issue Number:
11
Publication Date:
November 2023
View DOI Listing:
https://doi.org/10.1021/acsnano.7b05264

Abstract

Understanding of structural, electrical, and gravimetric peculiarities of water vapor interaction with ion-intercalated MXenes led to design of a multimodal humidity sensor. Neutron scattering coupled to molecular dynamics and ab initio calculations showed that a small amount of hydration results in a significant increase in the spacing between MXene layers in the presence of K and Mg intercalants between the layers. Films of K- and Mg-intercalated MXenes exhibited relative humidity (RH) detection thresholds of ∼0.8% RH and showed monotonic RH response in the 0–85% RH range. We found that MXene gravimetric response to water is 10 times faster than their electrical response, suggesting that H2O-induced swelling/contraction of channels between MXene sheets results in trapping of H2O molecules that act as charge-depleting dopants. The results demonstrate the use of MXenes as humidity sensors and infer potential impact of water on structural and electrical performance of MXene-based devices.