Boosting High‐Performance Aqueous Zinc‐Ion Hybrid Capacitors via Organic Redox Species on Laser‐Induced Graphene Network

Author:

Li Yiran1,Zhang Maoqin1,Lu Hongbo2,Cai Xinxin1,Jiao Zhaoyang1,Li Shujing3,Song Weixing1ORCID

Affiliation:

1. Beijing Key Laboratory Optical Materials and Photonic Devices, Department of Chemistry Capital Normal University Beijing 100048 China

2. State Key Laboratory of Space Power Sources Shanghai lnstitute of Space Power‐Sources Shanghai 200245 China

3. College of Chemistry and Materials Engineering Beijing Technology and Business University Beijing 100048 China

Abstract

AbstractHybrid zinc‐ion capacitors combine the energy storage capabilities of zinc‐ion batteries with the high‐power output of supercapacitors. However, the limited cycle life and narrow electrochemical window of hybrid zinc‐ion capacitors currently restrict their potential applications. Herein, a hybrid zinc‐ion capacitor is fabricated on laser‐induced graphene (LIG) based on in situ electropolymerization of organic compound poly(8‐amino‐2‐naphthol). The electropolymerized long‐conjugated chain polymers on the 3D conductive framework of LIG can enhance reaction kinetics, suppress the dissolution of organic compounds, and boost capacity. Simultaneously, hydrogen bonds form between polymer chains, aiding in proton transport. The assembled Zn//carbon cloth/LIG/poly(8‐amino‐2‐naphthol) hybrid zinc‐ion capacitors possess a high specific capacity of 308 mAh g−1 at 0.1 mA cm−2, which is twice as much as that of the batteries without LIG. Additionally, these hybrid capacitors can stably endure 10 000 cycles at a current density of 5 mA cm−2.

Funder

National Natural Science Foundation of China

Publisher

Wiley

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