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Fabrication of efficient nanostructured Co3O4-Graphene bifunctional catalysts: Oxygen evolution, hydrogen evolution, and H2O2 sensing

机译:高效纳米结构CO3O4-石墨烯双官能催化剂的制备:氧气演化,氢气进化和H2O2感测

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Nanostructured Co3O4-graphene hybrid catalysts are fabricated by a one-step vacuum kinetic spray technique from microparticles of Co3O4 and graphite powders. The Co3O4-graphene hybrid catalysts with various Co3O4 contents are studied concerning the oxygen evolution reaction (OER), and hydrogen evolution reaction (HER) in 1.0 M KOH, as well as, H2O2 sensing in 0.1 M NaOH. We find that increasing graphene content in the hybrid catalysts results in an overall improvement of the OER electrocatalytic activity due to the enhancement in the charge transfer kinetics. The hybrid catalyst with 25 wt% Co3O4 reveals the optimum electrocatalytic activity toward the OER with the lowest overpotential (eta) of 283 mV@ 10 mA cm(-2) and superior reaction kinetics with a low Tafel slope of 25 mV dec-1. Besides, the OER stability at 50 mA cm(-2) for 50 h in 1.0 M KOH was verified. The hybrid catalyst with 50 wt% Co3O4 revealed the highest activity toward the HER with eta of 108 mV@ 10 mA cm-2, Tafel slope of 90 mV.dec(-1), and stability at 50 mA cm(-2) for nearly 30 h. Moreover, it reveals ultrahigh H2O2 amperometric detection with superior sensitivity of 18,110 mu A mM(-1) cm(-2), linear detection range from 20 mu M to 1 mM, and a limit of detection of 0.14 mu M.
机译:纳米结构CO3O4-石墨烯杂化催化剂由来自CO 3 O4和石墨粉末的微粒的一步真空动力学喷雾技术制造。研究了具有各种CO 3 O 4含量的CO 3 O 4-石墨烯杂化催化剂关于氧气进化反应(oer),以及在1.0m KOH中的氢进化反应(她),以及0.1M NaOH中的H2O2感测。我们发现,由于电荷转移动力学的增强,杂种催化剂中的石墨烯含量增加导致Oer电催化活性的总体改善。具有25wt%CO 3 O4的杂化催化剂揭示了朝向OER的最佳电催化活性,其具有283mV的最低过电(ETA)和283mV×10mAcm(-2)的优异反应动力学,具有25mV DEC-1的低Tafel斜率。此外,验证了50 m mc cm(-2)的oer稳定性,验证了1.0 m KOH的50​​ h。具有50wt%CO3O4的杂化催化剂揭示了与108mV @ 10 mA cm-2,Tafel斜率为90mV.dec(-1)的eta的最高活性,并为50mA cm(-2)稳定近30小时。此外,它揭示了超高的H2O2电流检测,具有优异的敏感性为18,110μmmm(-1)cm(-2),线性检测范围为20μm至1mm,并限制为0.14 mu m。

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