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首页> 外文期刊>Particle & Particle Systems Characterization: Measurement and Description of Particle Properties and Behavior in Powders and Other Disperse Systems >Reduced Graphene Oxide decorated with Manganese Cobalt Oxide as Multifunctional Material for Mechanically Rechargeable and Hybrid Zinc-Air Batteries
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Reduced Graphene Oxide decorated with Manganese Cobalt Oxide as Multifunctional Material for Mechanically Rechargeable and Hybrid Zinc-Air Batteries

机译:用锰钴氧化物装饰的还原的石墨烯氧化物作为用于机械可充电和杂交锌空气电池的多功能材料

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摘要

Spinel MnCo2O4 nanoparticles on nitrogen-doped reduced graphene oxide (MnCo2O4/NGr) are synthesized for advanced zinc-air batteries with remarkable cyclic efficiency and stability. The synthesized MnCo2O4/NGr exhibits good oxygen-reduction reaction (ORR) activity with half-wave potential E-1/2 of 0.85 V (vs reversible hydrogen electrode (RHE)), comparable to commercial Pt/C with E-1/2 of 0.88 V (vs RHE) along with superior oxygen electrode activity Delta E = 0.91 V for the ORR/OER (oxygen-evolution reaction) in alkaline media. Durability tests confirm that MnCo2O4/NGr is more stable than Pt/C in alkaline environment. MnCo2O4/NGr functions with stable discharge profile of 1.2 V at 20 mA cm(-2), large discharge capacity of 707 mAh g(Zn)(-1) at 40 mA cm(-2) and a high energy density of 813 Wh kg(Zn)(-1) in a mechanically rechargeable zinc-air battery. The electrically rechargeable MnCo2O4/NGr zinc-air battery displays hybrid behavior with both Faradaic and oxygen redox charge-discharge characteristics, operating at higher voltage and providing higher power density and excellent cyclic efficiency of 86% for over 100 cycles compared to Pt/C with efficiency of around 60%. Moreover, hybrid zinc-air battery operates with a stable and energy efficient profile at different current densities.
机译:在氮气掺杂的氮气氧化物(MNCO2O4 / NGR)上合成尖晶石MnCo2O4纳米颗粒,用于高级锌 - 空气电池,具有显着的循环效率和稳定性。合成的MNCO2O4 / NGR表现出良好的氧还原反应(ORR)活性,其半波电位E-1/2的0.85V(VS可逆氢电极(RHE)),与E-1/2的商业PT / C相当0.88V(Vs RHE)以及碱性介质中的ORR / OER(氧 - 演化反应)的优异氧电极活性δ2= 0.91V。耐久性测试证实,MNCO2O4 / NGR在碱性环境中比PT / C更稳定。 MNCO2O4 / NGR在20mA cm(-2)的稳定放电曲线上,稳定的放电曲线为1.2V,放电容量为707mAhg(Zn)( - 1),40 mA cm(-2),高能量密度为813WH KG(Zn)( - 1)在机械可充电的锌 - 空气电池中。电阻MnCo2O4 / NGR锌空气电池通过佛罗里达州和氧氧化还原电荷 - 放电特性显示混合动力行为,以较高的电压运行,并与PT / C相比,超过100个循环提供较高的功率密度和86%的优异循环效率为86%效率约为60%。此外,混合锌 - 空气电池在不同电流密度下以稳定和节能的曲线操作。

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