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Co3O4 nanoparticles supported on N-doped electrospinning carbon nanofibers as an efficient and bifunctional oxygen electrocatalyst for rechargeable Zn-air batteries

机译:CO3O4纳米颗粒负载在N掺杂的静电纺丝碳纳米纤维上,作为可充电Zn-Air电池的有效和双官能氧电催化剂

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摘要

Composite materials made up of non-precious metal oxide and N-doped carbon materials are great potential bifunctional catalysts for Zn-air batteries (ZABs) owing to the synergistic effect caused by the two components. Herein, Co3O4 nanoparticles supported on N-doped electrospun carbon nanofibers (CNFs) with superior bifunctional activity for the ORR/OER and remarkable electrocatalytic stability in an alkaline electrolyte are designed and synthesized. In addition, the hybrid electrocatalyst further promotes the rechargeable ZABs with a low overpotential, high efficiency and prolonged cycling life, superior to those using precious metal catalysts of Pt/C and IrO2. Such a remarkable bifunctional catalytic activity is attributed to the enhanced charge transfer capability, abundant exposed catalytically active sites and the synergistic effect among the Co3O4 nanoparticles and CNFs. This work should provide a convenient pathway for the design of non-precious metal and carbon hybrid materials that can be employed as efficient electrocatalysts for large-scale implementations of renewable energy conversion devices.
机译:由于两种组分引起的协同效应,由非贵金属氧化物和N掺杂碳材料组成的复合材料是用于Zn-Air电池(ZAB)的潜在双官能催化剂。这里,设计和合成,在N掺杂的EXTER纺碳纳米纤维(CNFS)上负载在N掺杂的EXTERTOM碳纳米纤维(CNFS)上,具有优异的双功能活性,并在碱性电解质中具有显着的电催化稳定性。此外,杂化电催化剂进一步促进具有低过电位,高效率和延长的循环寿命的可充电Zab,优于使用Pt / C和IRO2的贵金属催化剂。这种显着的双官能催化活性归因于增强的电荷转移能力,充足的暴露催化活性位点以及CO3O4纳米颗粒和CNF的协同作用。这项工作应为设计的非贵金属和碳混合材料设计提供一种方便的途径,可用作可再生能源转换装置的大规模实施的有效电催化剂。

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