Understanding how junction resistances impact the conduction mechanism in nano-networks

File Type:
PDFItem Type:
Journal ArticleDate:
2024Access:
openAccessCitation:
Gabbett, Cian and Kelly, Adam G. and Coleman, Emmet and Doolan, Luke and Carey, Tian and Synnatschke, Kevin and Liu, Shixin and Dawson, Anthony and O’Suilleabhain, Domhnall and Munuera, Jose and Caffrey, Eoin and Boland, John B. and Sofer, Zdeněk and Ghosh, Goutam and Kinge, Sachin and Siebbeles, Laurens D. A. and Yadav, Neelam and Vij, Jagdish K. and Aslam, Muhammad Awais and Matkovic, Aleksandar and Coleman, Jonathan N., Understanding how junction resistances impact the conduction mechanism in nano-networks, Nature Communications, 15, 1, 2024Download Item:
Abstract:
Networks of nanowires, nanotubes, and nanosheets are important for many
applications in printed electronics. However, the network conductivity and
mobility are usually limited by the resistance between the particles, often
referred to as the junction resistance. Minimising the junction resistance has
proven to be challenging, partly because it is difficult to measure. Here, we
develop a simple model for electrical conduction in networks of 1D or 2D
nanomaterials that allows us to extract junction and nanoparticle resistances
from particle-size-dependent DC network resistivity data. We find junction
resistances in porous networks to scale with nanoparticle resistivity and vary
from 5 Ω for silver nanosheets to 24 GΩ for WS2 nanosheets. Moreover, our
model allows junction and nanoparticle resistances to be obtained simulta-
neously from AC impedance spectra of semiconducting nanosheet networks.
Through our model, we use the impedance data to directly link the high
mobility of aligned networks of electrochemically exfoliated MoS2 nanosheets
(≈ 7 cm2 V−1 s−1
) to low junction resistances of ∼2.3 MΩ.
Sponsor
Grant Number
Science Foundation Ireland
SFI/12/ RC/2278_P
Author's Homepage:
http://people.tcd.ie/jbolandhttp://people.tcd.ie/jvij
http://people.tcd.ie/colemaj
Sponsor:
Science Foundation IrelandType of material:
Journal ArticleCollections
Series/Report no:
Nature Communications;15;
1;
Availability:
Full text availableSubject:
nanowires, nanotubes, nanosheetsDOI:
http://dx.doi.org/10.1038/s41467-024-48614-5Metadata
Show full item recordThe following license files are associated with this item: