Bimetallic Zn/Cu Metal–Organic Framework (MOF)/ Two‐Dimensional i ‐MBene Hybrid Electrodes for Enhanced Supercapacitor Performance

ABSTRACT We demonstrate a tunable organic/inorganic metal–organic framework (MOF) structure, constructed on in‐plane MBene ( i ‐MBene) to serve as electrodes for supercapacitors. Bimetallic Zn/Cu MOF was synthesized and hybridized in situ over in‐plane Mo 4/3 Y 2/3 B 2 (ZC‐MYB), whereas i ‐MBene was produced by etching aluminum layers using hydrofluoric acid. The ZC‐MYB composite demonstrated a 46% increase in specific capacitance compared to ZC MOF and a 5.6‐fold increase over i‐ MBene at 1 A/g in hybrid (asymmetric) supercapacitors. The ZC‐MYB composite exhibited an 81% cyclic durability over 9000 cycles. The apparent diffusion coefficient of ZC and ZC‐MYB obtained from the Warburg element decreased, while electrochemical impedance analysis exhibited a much lower polarization resistance and a CPE response closer to the ideal capacitive behavior in 6 M KOH. The ZC‐MYB/AC device, operating as an asymmetric supercapacitor, demonstrated a specific capacitance of 73.4 F/g at a scan rate of 2 mV/s and maintained a voltage window of 1.6 V. A Random Forest model trained on 200 experimental observations from 35 independently synthesized samples showed a moderate within‐domain prediction ( R 2 = 0.522), under a leave‐one‐sample‐out validation. However, very low prediction of the high specific capacitance data illustrated the role of the model as an exploratory, rather than a universal predictor.

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Small
Published
2026-09-29
DOI
https://doi.org/10.1002/smll.75965
Primary Topic
Supercapacitor Materials and Fabrication
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article
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Bimetallic Zn/Cu Metal–Organic Framework (MOF)/ Two‐Dimensional i ‐MBene Hybrid Electrodes for Enhanced Supercapacitor Performance

Thorsten M. Gesing, Alina Nawaz, Iftikhar Hussain, Muhammad Yousaf et al.
Small
Supercapacitor Materials and Fabrication
article

Bimetallic Zn/Cu Metal–Organic Framework (MOF)/ Two‐Dimensional i ‐MBene Hybrid Electrodes for Enhanced Supercapacitor Performance

Thorsten M. Gesing, Alina Nawaz, Iftikhar Hussain, Muhammad Yousaf, Syed Ali Rizwan, Muhammad Zafar Iqbal, Sana Maqbool, Imtiaz Ahmad
article en

Abstract

ABSTRACT We demonstrate a tunable organic/inorganic metal–organic framework (MOF) structure, constructed on in‐plane MBene ( i ‐MBene) to serve as electrodes for supercapacitors. Bimetallic Zn/Cu MOF was synthesized and hybridized in situ over in‐plane Mo 4/3 Y 2/3 B 2 (ZC‐MYB), whereas i ‐MBene was produced by etching aluminum layers using hydrofluoric acid. The ZC‐MYB composite demonstrated a 46% increase in specific capacitance compared to ZC MOF and a 5.6‐fold increase over i‐ MBene at 1 A/g in hybrid (asymmetric) supercapacitors. The ZC‐MYB composite exhibited an 81% cyclic durability over 9000 cycles. The apparent diffusion coefficient of ZC and ZC‐MYB obtained from the Warburg element decreased, while electrochemical impedance analysis exhibited a much lower polarization resistance and a CPE response closer to the ideal capacitive behavior in 6 M KOH. The ZC‐MYB/AC device, operating as an asymmetric supercapacitor, demonstrated a specific capacitance of 73.4 F/g at a scan rate of 2 mV/s and maintained a voltage window of 1.6 V. A Random Forest model trained on 200 experimental observations from 35 independently synthesized samples showed a moderate within‐domain prediction ( R 2 = 0.522), under a leave‐one‐sample‐out validation. However, very low prediction of the high specific capacitance data illustrated the role of the model as an exploratory, rather than a universal predictor.

Small
City University of Hong Kong (HK), University of Bremen (DE), United Arab Emirates University (AE), Zhejiang University (CN), National University of Sciences and Technology (PK)
Life in Land
Openalex Percentile: Top 30%
Supercapacitor Materials and Fabrication
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