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In this paper, a surface electron hydronium ion-pair (EHIP) was proposed as an intermediate for photocatalytic hydrogen evolution reaction (HER) on silver and gold cathodes based on density functional theory (DFT) calculations.
Additionally, Raman spectra of the interfacial EHIP species are calculated, which is in support of the presence of EHIP intermediates in the process of photocatalytic HER on silver and gold cathodes.
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A viable lithium-oxygen battery is demonstrated using dimethylsulfoxide electrolyte and a porous gold cathode.
The technique was tested for gold cathode loaded with 57/58Co and 195/196Au.
We theoretically report on the enhancement of relative quantum efficiency from gold cathode up to 70 times compared to a flat surface, by use of nanostructured plasmonic surfaces to trap, localize, and enhance optical fields.
Samples were gold-palladium coated using a Denton Vacuum Desk II gold-cathode sputter to reduce sample charging and analyzed using a ZEISS 1540 XB field emission gun – scanning electron microscope (FEG-SEM) at 3.0 kV.
From the measurement of hole current only devices using electron blocking gold as cathode (ITO/PEDOT PSS/copolymer/Au), it was found that the hole current for the copolymers reduced as the OXA composition increased.
The spectrometer was equipped with transversely heated graphite tube with an integrated platform and a gold hollow cathode lamp (absorption line set to λ = 242.8 nm; slit width, 0.8 nm).
Using these techniques, a peak power density of 680 mW cm−2 is achieved at 60 °C with a direct borohydride/hydrogen peroxide fuel cell which employs palladium as the anode catalyst and gold as the cathode catalyst.
The morphology of gold deposits on various cathode materials was also investigated.
Minera Frisco SAB de CV is a Mexico-based company focused on the location of minerals in three basic stages for the production and commercialization of lead-silver concentrates, zinc concentrates, copper concentrates and copper in cathode and, gold and silver rods.
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