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Cobalt Based Nanoparticles Embedded Reduced Graphene Oxide Aerogel for Hydrogen Evolution Electrocatalyst
Authors:Sung Hwan Koo  Dong Jun Li  Taeyeong Yun  Dong Sung Choi  Kyung Eun Lee  Gil Yong Lee  Youngtak Oh  Joonwon Lim  Suchithra Padmajan Sasikala  Ho Jin Lee  In Ho Kim  Hong Ju Jung  Rishabh Jain  Sang Ouk Kim
Abstract:Efficient water electrolysis catalyst is highly demanded for the production of hydrogen as a sustainable energy fuel. It is reported that cobalt derived nanoparticle (CoS2, CoP, CoS|P) decorated reduced graphene oxide (rGO) composite aerogel catalysts for highly active and reliable hydrogen evolution reaction electrocatalysts. 7 nm level cobalt derived nanoparticles are synthesized over graphene aerogel surfaces with excellent surface coverage and maximal expose of active sites. CoS|P/rGO hybrid aerogel composites show an excellent catalytic activity with overpotential of ≈169 mV at a current density of ≈10 mA cm?2. Accordingly, efficient charge transfer is attained with Tafel slope of ≈52 mV dec?1 and a charge transfer resistance (Rct) of ≈12 Ω. This work suggests a viable route toward ultrasmall, uniform nanoparticles decorated graphene surfaces with well‐controlled chemical compositions, which can be generally useful for various applications commonly requiring large exposure of active surface area as well as robust interparticle charger transfer.
Keywords:cobalt phosphosulfide  electrocatalyst  graphene oxide  hydrogen evolution reaction  nanoparticle
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