Exact(1)
Gold platinum (Au Pt) hybrid nanoparticles (Au PtNPs) were successfully deposited on an indium tin oxide (ITO) surface using a direct electrochemical method.
Similar(59)
The single anodization processes to obtain self-aligned nanoporous titanium dioxide were always carried out potentiostatically in a homemade designed electrochemical cell by using a direct current (dc) source, that was kept to a constant voltage value of 20 V during the whole processes at several temperatures ranging from 2 °C to ambient and different times from 20 min up to several hours [21].
Helical polyaniline (PANI) nanofibers were facilely synthesized via a direct electrochemical method without using any template in the presence of (1S --camphor-10-sulfonic acid (d-CSA) or (1S --camphor-10-sulfonic acid (l-CSA) as the dopant.
In the present work, we report a direct electrochemical glycerol detection method using thermally annealed, facet-specific, single gold particles, Au (1 1 1), located in the cavities of a highly ordered SiO2 cavity array on an indium-doped tin oxide (ITO) electrode.
Herein, a direct electrochemical deposition method is used to incorporate the exfoliated monolayered MoS2 into BF4−-doped poly 3,4-ethylenedioxythiophene) (poly 3,4-ethylenedioxythiopheneT(BF4−)/MoS2 nanocomPEDOT BF4−
Use a direct close.
The LOD compares favourably with that obtained using indirect electrochemistry with 1,2-naphthoquinone-4-sulfonate [16], and it is considerably higher than the LODs obtained using direct electrochemical methods [13 15], although all these methods use aqueous solution and not undiluted saliva.
All measurements were performed using a scanning electrochemical microscope (SECM; HV-404, Hokuto Denko Co).
Electrochemical measurements were performed using a VMP3 electrochemical workstation (Biologic) and a multinecked, airtight glass cell.
BLMs composed of egg phosphatidylcholine (PC) can be used for the direct electrochemical sensing of these sweeteners.
Graphite anode used in the direct electrochemical de-oxidation of solid oxides in molten calcium chloride medium (FFC Cambridge process) degrades by formation of carbon oxides and erosion.
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