Differential SERS Activity
of Gold and Silver Nanostructures Enabled by Adsorbed Poly(vinylpyrrolidone)
Posted on 2012-02-07 - 00:00
We report that poly(vinylpyrrolidone) (PVP), a common
stabilizer of colloidal dispersions of noble metal nanostructures,
has a dramatic effect on their surface-enhanced Raman scattering (SERS)
activity and enables highly selective SERS detection of analytes of
various type and charge. Nanostructures studied include PVP-stabilized
Au–Ag nanoshells synthesized by galvanic exchange reaction
of citrate-reduced Ag nanoparticles (NPs), as well as solid citrate-reduced
Ag and Au NPs, both before and after stabilization with PVP. All nanostructures
were characterized in terms of their size, surface plasmon resonance
wavelength, surface charge, and chemical composition. While the SERS
activities of the parent citrate-reduced Ag and Au NPs are similar
for rhodamine 6G (R6G) and 1,2-bis(4-pyridyl)ethylene (BPE) at various
pH values, PVP-stabilized nanostructures demonstrate large differences
in SERS enhancement factors (EFs) between these analytes depending
on their chemical nature and protonation state. At pH values higher
than BPE’s pKa2 of 5.65, where
the analyte is largely unprotonated, the PVP-coated Au–Ag nanoshells
showed a high SERS EF of >108. In contrast, SERS EFs
were 103- to 105-fold lower for the protonated
form of BPE at lower pH values, or for the usually highly SERS-active
cationic R6G. The differential SERS activity of PVP-stabilized nanostructures
is a result of discriminatory binding of analytes within-adsorbed
PVP monolayer and a subsequent increase of analyte concentration at
the nanostructure surface. Our experimental and theoretical quantum
chemical calculations show that BPE binding with PVP-stabilized Au–Ag
nanoshells is stronger when the analyte is in its unprotonated form
as compared to its cationic, protonated form at a lower pH.
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Pinkhasova, Polina; Yang, Liu; Zhang, Yong; Sukhishvili, Svetlana; Du, Henry (2016). Differential SERS Activity
of Gold and Silver Nanostructures Enabled by Adsorbed Poly(vinylpyrrolidone). ACS Publications. Collection. https://doi.org/10.1021/la2047992