
AbstractThe synergism of excellent properties of carbon nanotubes and gold nanoparticles is used in this work for bio-sensing of recombinant bovine growth hormones (rbST) by making Multi Wall Carbon Nanotubes (MWCNT) locally optically responsive by augmenting it optical properties through Localized Surface Plasmon Resonance (LSPR). To this purpose, locally gold nano particles decorated gold–MWCNT composite was synthesized from a suspension of MWCNT bundles and hydrogen chloroauric acid in an aqueous solution, activated ultrasonically and, then, drop-casted on a glass substrate. The slow drying of the drop produces a “coffee ring” pattern that is found to contain gold–MWCNT nanocomposites, accumulated mostly along the perimeter of the ring. The reaction is studied also at low-temperature, in the vacuum chamber of the Scanning Electron Microscope and is accounted for by the local melting processes that facilitate the contact between the bundle of tubes and the gold ions. Biosensing applications of the gold–MWCNT nanocomposite using their LSPR properties are demonstrated for the plasmonic detection of traces of bovine growth hormone. The sensitivity of the hybrid platform which is found to be 1 ng/ml is much better than that measuring with gold nanoparticles alone which is only 25 ng/ml.
Light, Nanotubes, Carbon, Metal Nanoparticles, Reproducibility of Results, Biosensing Techniques, Equipment Design, Surface Plasmon Resonance, Sensitivity and Specificity, Article, Techniques and instrumentation, Nanocomposites, Equipment Failure Analysis, Growth Hormone, Nanoparticles, Animals, Scattering, Radiation, Cattle, Gold, Particle Size
Light, Nanotubes, Carbon, Metal Nanoparticles, Reproducibility of Results, Biosensing Techniques, Equipment Design, Surface Plasmon Resonance, Sensitivity and Specificity, Article, Techniques and instrumentation, Nanocomposites, Equipment Failure Analysis, Growth Hormone, Nanoparticles, Animals, Scattering, Radiation, Cattle, Gold, Particle Size
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