Double-Shelled Open Hollow Metal-Organic Frameworks for Efficient Aqueous Zn-Ion Batteries

Wen-Da Zhang,Yizhong Zou, Han Zhao,Ming Chen, Lang Zhou, Xue-Rui Xie,Xiaodong Yan, Huan Pang,Zhi-Guo Gu

SMALL(2024)

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摘要
Multi-shelled hollow metal-organic frameworks (MH-MOFs) are highly promising as electrode materials due to their impressive surface area and efficient mass transfer capabilities. However, the fabrication of MH-MOFs has remained a formidable challenge. In this study, two types of double-shelled open hollow Prussian blue analogues, one with divalent iron (DHPBA-Fe(II)) and the other with trivalent iron (DHPBA-Fe(III)), through an innovative inner-outer growth strategy are successfully developed. The growth mechanism is found to involve lattice matching growth and ligand exchange processes. Subsequently, DHPBA-Fe(II) and DHPBA-Fe(III) are employed as cathodes in aqueous Zn-ion batteries. Significantly, DHPBA-Fe(II) demonstrated exceptional performance, exhibiting a capacity of 92.5 mAh g-1 at 1 A g-1, and maintaining remarkable stability over an astounding 10 000 cycles. This research is poised to catalyze further exploration into the fabrication techniques of MH-MOFs and offer fresh insights into the intricate interplay between electronic structure and battery performance. Double-shelled open hollow Prussian blue analogues are developed by a novel inner-outer growth strategy using open hollow MOFs as templates, which exhibit enhanced aqueous Zn-ion battery performance with a capacity of 92.5 mAh g-1 at 1 A g-1 and robust stability over 10 000 cycles.image
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关键词
metal-organic frameworks,open hollow structure,spin polarization,Zn-ion batteries
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