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Advances in Zeolite Imidazolate Frameworks (ZIFs) Derived Bifunctional Oxygen Electrocatalysts and Their Application in Zinc–Air Batteries

机译:沸石Imidazolate框架(Zifs)衍生双官能氧电池的进展及其在锌 - 空气电池中的应用

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Secondary Zn-air batteries (ZABs) are recognized as one of the most promising power sources for the future with lucrative features of low cost, high energy density, eco-friendliness, and high safety. However, the widespread implementation of ZABs is still hampered by the sluggish oxygen redox reactions. Thus the deployment of cost-effective and highly efficient air electrodes to substitute precious metals (Pt/Ir), is highly challenging, however, highly desired. Zeolitic imidazolate frameworks (ZIFs) are emerging functional materials, which demonstrate several outstanding characteristics, such as high specific surface area, high conductivity, self-doped N, open pore structure, versatile compositions and favourable chemical stability. Through varying the metal/organic moiety or by employing different synthesis protocols, ZIFs with different properties could be obtained. Being adaptable, desired functionalities may be further incorporated into ZIFs through pre-treatment, in situ treatment, and post treatment. Thus, ZIFs are the ideal precursors for the preparation of variety of bi-functional air electrodes for ZABs by materials tuning, morphological control, or by materials hybridization. Here, the recent advances of ZIFs-based materials are critically surveyed from the perspective of synthesis, morphology, structure and properties, and correlated with performance indicators of ZABs. Finally, the major challenges and future prospects of ZIFs associated with ZABs are discussed.
机译:二级Zn-Air电池(ZABs)被认为是未来最有前途的电源之一,具有低成本,高能量密度,生态友好和高安全性的利润丰厚的特征。然而,Zabs的广泛实施仍然受到缓慢的氧氧化还原反应的阻碍。因此,成本效益和高效的空气电极替代贵金属(Pt / IR)的部署是高度挑战的,然而,非常需要。沸石Imidazolate框架(Zifs)是出现的功能材料,其表现出几种出色的特性,如高比表面积,高导电性,自掺杂N,开孔结构,通用组合物和有利的化学稳定性。通过改变金属/有机部分或通过采用不同的合成方案,可以获得具有不同性质的ZIF。适应性,可以通过预处理,原位处理和后处理进一步将所需的功能进一步掺入Zif中。因此,ZIFS是通过材料调节,形态对照或通过材料杂交制备用于ZAB的各种双官能空气电极的理想前体。这里,从合成,形态,结构和性质的角度来看,ZIFS基材料的最近进步受到严重调查的,并且与ZABs的性能指标相关。最后,讨论了与ZABs相关的ZIF的主要挑战和未来前景。

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