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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >A Co-MOF-derived oxygen-vacancy-rich Co3O4-based composite as a cathode material for hybrid Zn batteries
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A Co-MOF-derived oxygen-vacancy-rich Co3O4-based composite as a cathode material for hybrid Zn batteries

机译:富含氧源性富氧空位的CO3O4基复合材料作为杂交Zn电池的阴极材料

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Through the integration of Zn-Co3O4 and Zn-air batteries at the cell level, a hybrid battery was assembled, which possessed a higher voltage and power density than a common Zn-air battery. In this hybrid battery, the cathode material is composed of oxygen-vacancy-rich Co3O4-x and N, S-co-doped carbon derived from a metal-organic framework; a Zn plate acts as the anode. With a current of 1 A g(-1), the specific capacity of the cathode material achieves 144 mA h g(-1). A four-electron process dominates the oxygen reduction reaction of the cathode material with a half wave potential of 0.78 V. In the oxygen evolution reaction, the eta(10) potential of the cathode material is merely 365 mV. When discharged at 1 mA cm(-2), the hybrid Zn battery shows two discharge plateaus at 1.75 V and 1.11 V. Its specific capacity and energy density reach 711 mA h g(-1) and 810 W h kg(-1), respectively. This battery also inherits superior power density from the Zn-Co3O4 battery. Its peak power density occurs at 43.6 mW cm(-2), and this value is obviously higher than that of the Zn-air battery built from the same cathode material. The hybrid battery also exhibits excellent stability with a capacity and charge-discharge voltage that are well maintained after long time periods. This study integrates two distinct batteries into one power source to develop a hybrid Zn battery, which possesses high voltage, specific capacity and superior power and energy densities.
机译:通过在电池电平处的Zn-Co3O4和Zn-Air电池的集成,组装混合动力电池,其具有比公共Zn空气电池更高的电压和功率密度。在该混合电池中,阴极材料由富氧空位的CO3O4-X和N,S-掺杂碳组成,所述含有源自金属有机框架的碳; Zn板充当阳极。具有1Ag(-1)的电流,阴极材料的比容量达到144mA Hg(-1)。四电子过程主要主导阴极材料的阴极材料的氧还原反应0.78V的半波电位。在氧进化反应中,阴极材料的ETA(10)电位仅仅是365mV。在1 mA cm(-2)处放电时,杂交Zn电池显示出1.75 V和1.11 V的两个放电平台。其特定容量和能量密度达到711 mA Hg(-1)和810WH kg(-1),分别。该电池还从Zn-Co3O4电池继承了优异的功率密度。其峰值功率密度在43.6mW cm(-2)中发生,并且该值明显高于与相同的阴极材料构成的Zn-空气电池的峰值。混合动力电池还具有优异的稳定性,其容量和充电 - 放电电压在长时间后保持良好。本研究将两个不同的电池集成到一个电源中,以开发混合Zn电池,该电池具有高电压,特定容量和优势和能量密度。

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