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Metal-organic-framework-derived two-dimensional ultrathin mesoporous hetero-ZnFe2O4/ZnO nanosheets with enhanced lithium storage properties for Li-ion batteries

机译:金属有机骨架的二维超薄介孔杂ZnFe2O4 / ZnO纳米片,具有增强的锂离子电池储锂性能

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摘要

Mesoporous hetero-structures have drawn tremendous attention due to their unprecedented inherent advantages in advanced Li-ion batteries (LIBs). In this study, we developed a facile metal-organic-framework-engaged synthetic methodology for large-scale fabrication of two-dimensional (2D) mesoporous hetero-ZnFe2O4/ZnO nanosheets (ZFOZ NSs) with homogeneously dispersed hetero-nanodomains of spinel ZnFe2O4 and ZnO. When evaluated as a promising anode for LIB applications, the resultant 2D ultrathin mesoporous hetero-ZFOZ NSs exhibited extraordinary electrochemical Li storage performance with long-cycle behavior and large reversible capacities for next-generation LIB applications, thanks to the attractive synergetic contributions from ultrathin mesoporous architecture and electroactive bi-component hetero-interfaces at the nanoscale. Even more encouragingly, the electrode concept we developed here can be easily generalized to rational design and synthesis of other mesoporous hetero-hybrids with remarkable lithium storage capacities for LIBs.
机译:介孔异质结构由于其在高级锂离子电池(LIB)中的前所未有的固有优势而备受关注。在这项研究中,我们开发了一种易于金属-有机-框架结合的合成方法,用于大规模制造具有均匀分布的尖晶石ZnFe2O4杂纳米域的二维(2D)介孔杂ZnFe2O4 / ZnO纳米片(ZFOZ NSs)。氧化锌当被评估为LIB应用的有希望的阳极时,由于超薄介孔的吸引人的协同作用,所得的2D超薄介孔杂ZFOZ NSs表现出非凡的电化学Li储存性能,具有长周期的行为和对下一代LIB应用的大可逆容量。纳米级的结构和电活性双组分异质界面。更加令人鼓舞的是,我们在这里开发的电极概念可以轻松地推广到合理设计和合成其他具有显着锂离子电池储锂能力的中孔杂种杂化物。

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