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Exploiting Le Chatelier's principle for a one-pot synthesis of nontoxic HHogGNPs with the sharpest nanoscopic features suitable for tunable plasmon spectroscopy and high throughput SERS sensing.

M BhattacharyaV MazovBiswarup SatpatiP JenaS Das ChakrabortyS KumarBiswarup PathakD V KuznetsovDulal Senapati
Published in: Chemical communications (Cambridge, England) (2017)
Applying Le Chatelier's principle, a one-pot synthesis method is reported that generates highly anisotropic hedgehog gold nanoparticles (HHogGNPs), undemanding of a preformed seed or surfactant. These non-toxic HHogGNPs are potent candidates for nanomedicinal applications owing to their broad-band plasmon tunability, gigantic Raman enhancement and remarkable retention in a highly salted physiological environment.
Keyphrases
  • gold nanoparticles
  • high throughput
  • energy transfer
  • reduced graphene oxide
  • high resolution
  • single cell
  • sensitive detection
  • mass spectrometry
  • quantum dots
  • solid state