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Updated: Jun 28, 2025

Zinc-Sponge Battery Electrodes that Suppress Dendrites
Published on: September 29, 2020
Unlock flow-type reversible aqueous Zn-CO2 batteries.
Muhammad Kashif Aslam1, Herui Wang1, Zhihao Nie1
1School of Energy and Power Engineering, MIIT Key Laboratory of Thermal Control of Electronic Equipment, School of Chemistry and Chemical Engineering, Nanjing University of Science and Technology, Nanjing 210094, P. R. China. liqiang@mail.njust.edu.cn.
A novel aqueous reversible flow-type zinc-carbon dioxide (Zn-CO2) battery with a Pd/SnO2@C catalyst achieves ultra-high voltage and energy density. This technology simultaneously stores energy, reduces CO2, and produces valuable chemicals.
Area of Science:
- Electrochemistry
- Materials Science
- Environmental Science
Background:
- Metal-CO2 batteries show promise for energy storage and CO2 utilization.
- Challenges remain in device design for efficient CO2 reduction and power output.
Purpose of the Study:
- To develop an aqueous reversible flow-type Zn-CO2 battery with enhanced performance.
- To address limitations in CO2 reduction and energy supply for metal-CO2 batteries.
Main Methods:
- Assembly of an aqueous reversible flow-type Zn-CO2 battery.
- Utilized a Pd/SnO2@C cathode catalyst for CO2 reduction.
- Characterization of electrochemical performance, including voltage, power density, and efficiency.
Main Results:
- Achieved an ultra-high discharge voltage of 1.38 V.
- Demonstrated a peak power density of 4.29 mW cm-2 and high energy efficiency of 95.64%.
- Reported a theoretical energy density of 827.3 W h kg-1 and high formate faradaic efficiency (95.86%) at a high rate.
Conclusions:
- The developed Zn-CO2 battery system offers a promising solution for simultaneous energy storage, CO2 elimination, and valuable chemical production.
- This technology addresses critical energy and environmental challenges.
- The optimized system showcases significant advancements in metal-CO2 battery technology.
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