Revolutionizing Energy: 3D-Printed Ni–Zn Batteries #sciencefather #researchaward #EnergyStorage
This study introduces an innovative porous frame engineering approach to significantly enhance charge transport in 3D-printed Ni–Zn alkaline batteries. By carefully designing interconnected pore structures, we achieved uniform electrolyte penetration and reduced ion diffusion resistance, leading to improved charge/discharge kinetics. Our engineered electrodes demonstrate superior electrochemical performance, achieving higher capacity, improved cycling stability, and faster charge transport. This breakthrough addresses key challenges in 3D-printed battery technology, paving the way for scalable, eco-friendly, and high-performance energy storage solutions. Our work highlights the transformative potential of tailored porous architectures in advancing sustainable battery technologies for next-generation energy needs.
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