The energy storage ability of a device highly depends on the morphology of the materials used. A structure-directing agent (SDA) can be used to design materials with a specific surface morphology. Zeolite imidazole (ZIF-67) is a favorable electroactive material for energy storage devices. Here, we present a novel approach for synthesizing a ZIF-67 derived NiCo layer double hydroxide hollow surface sheet like morphology, in which potassium fluoroborate acts as a SDA. The hollow sheets possess the largest specific capacitance of 1171 F g−1 at 1 A g−1. The energy storage device composed of ZIF-67 derivatives and a carbon electrode presents a maximum energy density of 26 W h kg−1 at a power density of 804 W kg−1. The device shows good cyclic stability of 84% after 10 000 charge–discharge cycles. These outcomes reveal the promising potential of zeolite imidazole (ZIF-67)-based materials for use in next-generation energy storage devices.

Structure-directed synthesis of bimetallic ZIF-67 LDH nanocomposites for high-performance supercapacitors / Rehman, Z.U., Yao, S., Miotello, A., Ben Henda, M., Farooq, U., Aziz, I., Althagafi, T.M., Almarhoon M., Z., Zaki, E.A.M., Khan, A.U.. - In: RSC ADVANCES. - ISSN 2046-2069. - STAMPA. - 2025:15(2025), pp. 16667-16676. [10.1039/D5RA01889G]

Structure-directed synthesis of bimetallic ZIF-67 LDH nanocomposites for high-performance supercapacitors

Miotello, Antonio;
2025-01-01

Abstract

The energy storage ability of a device highly depends on the morphology of the materials used. A structure-directing agent (SDA) can be used to design materials with a specific surface morphology. Zeolite imidazole (ZIF-67) is a favorable electroactive material for energy storage devices. Here, we present a novel approach for synthesizing a ZIF-67 derived NiCo layer double hydroxide hollow surface sheet like morphology, in which potassium fluoroborate acts as a SDA. The hollow sheets possess the largest specific capacitance of 1171 F g−1 at 1 A g−1. The energy storage device composed of ZIF-67 derivatives and a carbon electrode presents a maximum energy density of 26 W h kg−1 at a power density of 804 W kg−1. The device shows good cyclic stability of 84% after 10 000 charge–discharge cycles. These outcomes reveal the promising potential of zeolite imidazole (ZIF-67)-based materials for use in next-generation energy storage devices.
2025
15
Settore FIS/03 - Fisica della Materia
Rehman, Zia Ur; Yao, Shanshan; Miotello, Antonio; Ben Henda, Mouna; Farooq, Umar; Aziz, Irum; Althagafi, Talal M.; Almarhoon M., Zaina; Zaki, E. A. Ma...espandi
Structure-directed synthesis of bimetallic ZIF-67 LDH nanocomposites for high-performance supercapacitors / Rehman, Z.U., Yao, S., Miotello, A., Ben Henda, M., Farooq, U., Aziz, I., Althagafi, T.M., Almarhoon M., Z., Zaki, E.A.M., Khan, A.U.. - In: RSC ADVANCES. - ISSN 2046-2069. - STAMPA. - 2025:15(2025), pp. 16667-16676. [10.1039/D5RA01889G]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11572/487050
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