Journal article

Cellulose nanofibre textured SERS substrate

L Zhang, X Li, L Ong, RF Tabor, BA Bowen, AI Fernando, A Nilghaz, G Garnier, SL Gras, X Wang, W Shen

Colloids and Surfaces A Physicochemical and Engineering Aspects | Published : 2015

Abstract

Poor reproducibility limits the wide uptake of low-cost surface enhanced Raman spectroscopy (SERS) substrates. This study reports a relatively low-cost and reproducible cellulose nanofibre (CNF) textured SERS substrate. Utilizing a layer of CNFs deposited onto glass slides, nanoscale roughness was achieved, which facilitated effective aggregation of gold nanoparticles (AuNPs) to form a novel CNF textured SERS substrate. This substrate meets the critical roughness requirements to control the distribution of AuNPs to provide 'hot spots' for SERS detection, offering significant signal enhancement. The reproducibility and accuracy of low-cost cellulosic SERS substrates were significantly improve..

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Grants

Awarded by Australian Research Council


Funding Acknowledgements

This work was funded by the Australian Research Council Grant (ARC LP 110200973). Thanks to F. Shanks, R. Curtain, A/Prof. R. Dagastine, R. Chen and H. Shen for technical supports, discussions and manuscript proof reading. McKenzie fellowship (The University of Melbourne) and IDP Student Mobility Scholarship are acknowledged. S. Gras and L. Ong are supported by The ARC Dairy Innovation Hub.