AI Article Synopsis

  • Reduced graphene oxide-osmium (rGO-Os) hybrid nano dendrites were created using a straightforward liquid/liquid interface method, resulting in networks of Os nanoparticles on rGO layers.
  • The hybrid film demonstrated improved catalytic activity for reducing -nitroaniline, showing 4.4 s g activity, which is competitive with noble metals like Au and Ag, but less than Pd.
  • Surface-enhanced Raman spectroscopy (SERS) tests indicated that the rGO-Os hybrid film had a significant enhancement factor for detecting dyes, highlighting its potential in electrocatalysis and biomolecule detection.

Article Abstract

Reduced graphene oxide-osmium (rGO-Os) hybrid nano dendtrites have been prepared by simple liquid/liquid interface method for the first time. The method involves the introduction of phase-transfered metal organic precursor in toluene phase and GO dispersion in the aqueous phase along with hydrazine hydrate as the reducing agent. Dendritic networks of Os nanoparticles and their aggregates decorating rGO layers are obtained. The substrate shows improved catalytic and surface-enhanced activities comparable with previous reports. The catalytic activity was tested for the reduction of -nitroaniline into -phenyldiamine with an excess amount of NaBH. The catalytic activity factors of these hybrid films are 2.3 s g (Os film) and 4.4 s g (rGO-Os hybrid film), which are comparable with other noble metal nanoparticles such as Au, Ag, but lower than Pd-based catalysts. Surface-enhanced Raman spectroscopy (SERS) measurements have been done on rhodamine 6G (R6G) and methylene blue dyes. The enhancement factor for the R6G adsorbed on rGO-Os thin film is 1.0 × 10 and for Os thin film is 7 × 10. There is a 14-fold enhancement observed for Os hybrids with rGO. The enhanced catalytic and SERS activities of rGO-Os hybrid thin film prepared by simple liquid/liquid interface method open up new challenges in electrocatalytic application and SERS-based detection of biomolecules.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5627083PMC
http://dx.doi.org/10.1098/rsos.170353DOI Listing

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Article Synopsis
  • Reduced graphene oxide-osmium (rGO-Os) hybrid nano dendrites were created using a straightforward liquid/liquid interface method, resulting in networks of Os nanoparticles on rGO layers.
  • The hybrid film demonstrated improved catalytic activity for reducing -nitroaniline, showing 4.4 s g activity, which is competitive with noble metals like Au and Ag, but less than Pd.
  • Surface-enhanced Raman spectroscopy (SERS) tests indicated that the rGO-Os hybrid film had a significant enhancement factor for detecting dyes, highlighting its potential in electrocatalysis and biomolecule detection.
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