Photoacoustic quantification of the optical absorption cross-sections of gold nanostructures
Article 2010 en
Authors
CK
Chulhong Kim
EC
Eun Chul Cho
FZ
Fei Zhou
Abstract
1 min read
This study demonstrates a method for measuring the optical absorption cross-sections (σ<sub>a</sub>) of Au-Ag nanocages and Au nanorods using photoacoustic (PA) sensing. PA signals are directly proportional to the absorption coefficient (μ<sub>a</sub>) of the nanostructure. For each type of nanostructure, we first obtained μa from the PA signal by benchmarking against a linear calibration curve (PA signal vs. μ<sub>a</sub>) derived from a set of methylene blue solutions with different concentrations. We then calculated σ<sub>a</sub> by dividing the μ<sub>a</sub> by the corresponding concentration of the Au nanostructure. Additionally, we obtained the extinction cross-section (σ<sub>e</sub>, sum of absorption and scattering cross-sections) from the extinction spectrum recorded using a conventional UV-vis-NIR spectrometer. From the measurements of σ<sub>a</sub> and σ<sub>e</sub>, we were able to easily derive both the absorption and scattering cross-sections for each type of gold nanostructure. This method can potentially provide the optical absorption and scattering properties of gold nanostructures and other types of nanomaterials.
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