首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Rational synthesis of metal-organic framework composites, hollow structures and their derived porous mixed metal oxide hollow structures
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Rational synthesis of metal-organic framework composites, hollow structures and their derived porous mixed metal oxide hollow structures

机译:金属有机骨架复合材料,空心结构及其衍生的多孔混合金属氧化物空心结构的合理合成

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摘要

Metal-organic frameworks (MOFs) have attracted considerable attention for their important applications. Recently, significant efforts have been devoted to constructing hollow MOF structures and integrating MOFs with other functional materials to further enhance the inherent performance and endow them with new functions. However, it still remains a big challenge to synthesize well-defined MOF composites and MOF hollow structures, especially those with structural and compositional complexity. In this work, we demonstrate a chemical transformation method to synthesize unique MOF composites, as well as hollow and complex hollow MOF structures. This method could intelligently overcome the difficulty that is caused by the possible lattice mismatch between MOFs and other functional materials. Impressively, a series of unique MOF@MOF core-shell structures, MOF composites, MOF hollow and complex hollow structures are successfully synthesized. Moreover, porous mixed metal oxide hollow and complex structures are obtained by annealing the corresponding MOF hollow and complex hollow structures in air. We anticipate that these unique MOF composites, hollow structures and the derived porous mixed metal oxide hollow structures could find promising applications in many other fields. As an example, NiFe oxide cube-in-box complex hollow nanostructures are evaluated as anode materials for lithium-ion batteries (LIBs), which exhibit enhanced electrochemical performance compared to the simple nanobox counterparts.
机译:金属有机框架(MOF)的重要应用吸引了相当多的关注。近来,已经做出了巨大的努力来构造空心MOF结构并将MOF与其他功能材料集成,以进一步增强固有性能并赋予它们新的功能。但是,合成定义明确的MOF复合材料和MOF中空结构,尤其是具有结构和组成复杂性的MOF中空结构,仍然是一个巨大的挑战。在这项工作中,我们演示了一种化学转化方法,可以合成独特的MOF复合材料以及中空和复杂的中空MOF结构。该方法可以智能地克服由MOF和其他功能材料之间可能的晶格失配引起的困难。令人印象深刻的是,成功地合成了一系列独特的MOF @ MOF核壳结构,MOF复合材料,MOF中空结构和复杂中空结构。此外,通过在空气中对相应的MOF中空和复杂中空结构进行退火,获得了多孔的混合金属氧化物中空和复杂结构。我们预计,这些独特的MOF复合材料,中空结构和派生的多孔混合金属氧化物中空结构可以在许多其他领域中找到有前途的应用。例如,评估了NiFe氧化物箱中型立方体复合空心纳米结构作为锂离子电池(LIB)的负极材料,与简单的纳米箱对应物相比,其电化学性能更高。

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