Extracting the Temperature Dependence of Both Nanowire Resistivity and Junction Resistance from Electrical Measurements on Printed Silver Nanowire Networks

File Type:
PDFItem Type:
Journal ArticleDate:
2025Access:
openAccessCitation:
Coleman, Emmet and Kelly, Adam and Gabbett, Cian and Doolan, Luke and Liu, Shixin and Yadav, Neelam and Vij, Jagdish K. and Coleman, Jonathan N., Extracting the Temperature Dependence of Both Nanowire Resistivity and Junction Resistance from Electrical Measurements on Printed Silver Nanowire Networks, ACS Applied Electronic Materials, 7, 2, 2025, 806 – 815Download Item:
Abstract:
Printed networks of nanoparticles (e.g., nanodots, nanowires, nanosheets) are important for a range of electronic, sensing and energy storage applications. Characterizing the temperature dependence of both the nanoparticle resistivity (ρNW) and interparticle junction resistance (RJ) in such networks is crucial for understanding the conduction mechanism and so for optimizing network properties. However, it is challenging to extract both ρNW and RJ from standard electrical measurements. Here, using silver nanowires (AgNWs) as a model system, we describe a broadly applicable method to extract both parameters from resistivity measurements on nanowire networks. We achieve this by combining a simple theoretical model with temperature-dependent resistivity measurements on sets of networks fabricated from nanowires of different lengths. As expected, our results demonstrate that RJ is the predominant bottleneck for charge transport within these networks, with RNW/RJ in the range 0.03–0.7.
Sponsor
Grant Number
Science Foundation Ireland (SFI)
21/US/3788
Author's Homepage:
http://people.tcd.ie/colemajhttp://people.tcd.ie/jvij
Description:
PUBLISHEDCited by: 0; All Open Access, Hybrid Gold Open Access
Author: Coleman, Jonathan; Vij, Jagdish
Sponsor:
Science Foundation Ireland (SFI)Type of material:
Journal ArticleCollections
Series/Report no:
ACS Applied Electronic Materials7
2
Availability:
Full text availableSubject:
nanowire networks, nanoparticles, temperature dependenceSubject (TCD):
Nanoscience & Materials , Electronic MaterialsDOI:
http://dx.doi.org/10.1021/acsaelm.4c01965Metadata
Show full item recordThe following license files are associated with this item: