Polyoxotungstate/Oxy-Graphene Nanocomposite Multilayer Films For Electrocatalytic Hydrogen Evolution
Author(s) -
Yasemin Torlak
Publication year - 2018
Publication title -
journal of the turkish chemical society section a chemistry
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.179
H-Index - 6
ISSN - 2149-0120
DOI - 10.18596/jotcsa.420009
Subject(s) - electrocatalyst , nanocomposite , graphene , oxygen evolution , materials science , cyclic voltammetry , catalysis , water splitting , chemical engineering , reversible hydrogen electrode , carbon fibers , glassy carbon , electrode , inorganic chemistry , electrochemistry , nanotechnology , chemistry , working electrode , composite number , organic chemistry , composite material , photocatalysis , engineering
In this study, nanocomposites were formed together with Keggin-type K 7-x Na x PW 11 O 39 ∙14H 2 O (POTs) clusters and oxygenated-graphene (Oxy-G). It was produced as a multilayer by layer-by-layer self-assembly method using protonated poly (ethylenimine) (PEI). The produced (PEI / POTs / Oxy-G) n multilayer films were controlled by XRD, cyclic voltammetry and UV-visible spectroscopy. (PEI / POTs / Oxy-G) n multilayers modified on a glassy carbon electrode and the hydrogen evolution reaction taking advantage of the electrocatalytic activity of this nanocomposite. Multilayer has been shown to exhibit a potentially good electrocatalytic activity at -0.4 V. A notable electrocatalytic hydrogen evolution reaction could be identified on the (PEI/ POTs/Oxy-G) n multilayer. We demonstrate that expanded the application of POTs/G nanocomposites to the electrocatalysis of oxygen reduction reaction and hydrogen evolution reaction. This excellent approach will offer new insights into different electrode structure and the development of novel electroactive catalysts.
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