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Surface etching-dependent geometry tailoring and multi-spectral information of Au@AuAg yolk-shell nanostructure with asymmetrical pyramidal core: The application in Co2+ determination.

Authors :
He, Zhao
Zhu, Jian
Li, Xin
Weng, Guo-Jun
Li, Jian-Jun
Zhao, Jun-Wu
Source :
Journal of Colloid & Interface Science. Nov2022, Vol. 625, p340-353. 14p.
Publication Year :
2022

Abstract

Using Ag-coated Au nanobipyramids as a sacrificial template, a novel and exquisite morphologically adjustable Au@AuAg yolk-shell heterogeneous nanostructure with asymmetrical pyramidal core is prepared. And this nanostructure is used as multi-information spectral sensor to sensitively detect Co2+ based on shell etching. [Display omitted] In this paper, a novel Au@AuAg yolk-shell heterogeneous nanostructure is designed as plasmonic spectroscopic sensor based on surface etching for ultrasensitive detection of trace cobalt ions (Co2+). Due to the surface diffusion of gold atoms, the Ag at one end of the core gold nanobipyramids (Au NBPs) is retained, and Au@AuAg yolk-shell nanostructure with asymmetric core is prepared. The alloy shell is coupled to Au NBPs and the interface of asymmetric Ag respectively, the two local surface plasmon resonance bands will have obvious reverse changes depending on the surface morphology of the shell. By using this distinct plasmon response generated by Co2+ induced surface etching, which is driven by discrepancy of double-peaks, a sensing method has been established to realize multi-information spectral detection of Co2+. There is a good linear relationship between the intensity ratio and the Co2+ concentration in the range of 1–100 nM, in which the limit of detection is 0.2 nM. This method further improves the sensing capability by combining multiple pieces of strongly changing spectral information, and demonstrates great advantages and potential of Au@AuAg yolk-shell heterogeneous nanostructure as a multi-information plasmonic sensor based on etched shell surface for trace detection. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00219797
Volume :
625
Database :
Academic Search Index
Journal :
Journal of Colloid & Interface Science
Publication Type :
Academic Journal
Accession number :
157992234
Full Text :
https://doi.org/10.1016/j.jcis.2022.06.013