AI Article Synopsis

  • Titanium dioxide nanoparticles were synthesized using a sol-gel method with hexafluorotitanic acid and poly(ethylene glycol) as a capping agent.
  • These nanoparticles were used to enhance a graphite paste electrode for the simultaneous detection of uric acid and guanine, with optimal electrochemical performance noted at specific calcination temperatures.
  • The method demonstrated strong, well-separated oxidation peaks for both compounds and showed linear detection ranges, achieving low detection limits in spiked urine and serum samples.

Article Abstract

Titanium dioxide nanoparticles (NPs) were synthesized by a sol-gel method from hexafluorotitanic acid using poly(ethylene glycol) as a capping agent. The crystal structure and morphology of the NPs were characterized by X-ray diffraction, FESEM, and TEM. The NPs were used to modify a graphite paste electrode for simultaneous determination of uric acid (UA) and guanine (GU). The effect of calcination temperature on crystal structure and electrocatalytic activity was investigated. The electrochemical responses to UA and GU at bare GP, TiO-350/GP, and TiO-600/GP electrodes were compared. The DPV oxidation peaks of UA and GU were found to be strongest at around 304 and 673 mV, respectively, against Ag/AgCl reference electrode, and this are well separated for effective simultaneous determination. UA and GU can be simultaneously determined by this method. Response is linear within the range 0.1-500 μM and 0.1-40 μM for UA and GU, respectively. The detection limits are 70 nM for UA and 50 nM for GU (at an S/N  ratio of 3). The TiO-600/GP electrode showed excellent analytical performance when analyzing spiked urine and serum samples. Graphical abstract A graphical representation of cubic TiO nanoparticle formation during hydrolysis through sol-gel process.

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Source
http://dx.doi.org/10.1007/s00604-018-3042-9DOI Listing

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