Electrochemical Oxidation Mechanism of Thiosalicylic Acid on Activated Glassy Carbon Electrode
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Air-Stable Cobalt-Semiquinone Radical Complexes on Carbon Nanotubes: A Redox Switch for Anion Response. [PDF]
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Novel Acid-Assisted Polymerization Technique for the Synthesis of Polyaniline Films at Room Temperature on Glassy Carbon for Supercapacitor Applications. [PDF]
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Turning the FeFe hydrogenase from <i>Clostridium beijerinckii</i> into an efficient H<sub>2</sub> oxidation catalyst using a redox-active matrix. [PDF]
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Synthesis, Characterization, and Fabrication of a Salicylaldazine-Modified GC Electrode to Detect Tryptophan in Food Samples: An Analytical Technique Using an Electrochemical Approach. [PDF]
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Synthesis, structure, photochemical and electrochemical properties of α-germyl ferrocenyl ketones.
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In the present article, the disulfide tungsten/activated carbon derived from Eichhornia crassipes (WS2/AC) was synthesized by the hydrothermal process. The received materials were examined by X-ray diffraction, scanning electron microscopy, energy-dispersive X-ray - mapping, and nitrogen adsorption/desorption isotherms.
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Vertically-ordered mesoporous silica-nanochannel films (VMSF) with highly ordered nanochannels, uniform and adjustable pore size, ultra-thin thickness, and high porosity, have attracted considerable attention in analysis, molecular separation, catalysis,
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The electrochemical behavior of epinephrine at activated glassy carbon electrode and carbon nanotube-coated glassy carbon electrode was studied. Epinephrine could exhibit an anodic peak at about 0.2 V (vs. SCE) at bare glassy carbon electrode, but it was very small. However, when the electrode was activated at certain potential (i. e.
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