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August 19, 2026

New Research Published in Advanced Functional Materials

A new study reports a bifunctional interface that enables stable zinc-metal batteries across a wide depth-of-discharge window.

Zinc-metal battery research

August 5, 2026

3Dnatives Features Our 3D-Printed Zinc-Ion Battery Research

3Dnatives highlights our UCLA research on a 3D-printed zinc-ion battery that stores more than seven times the charge of comparable devices.

3D-printed zinc-ion battery research at UCLA

July 29, 2026

Climate Solutions News Features Our 3D-Printed Zinc Battery Research

Climate Solutions News highlights our UCLA research on a 3D-printed zinc-ion hybrid battery that stores more than seven times the energy of comparable devices, with promising potential for affordable, safe, and sustainable grid-scale renewable energy storage.

UCLA 3D-printed zinc-ion hybrid battery for renewable energy storage

July 27, 2026

OKDIARIO Highlights Our 3D-Printed Zinc Battery Research

OKDIARIO features our UCLA research on a 3D-printed zinc-ion battery, highlighting its sevenfold increase in charge storage and the potential of abundant zinc as a sustainable alternative to lithium.

3D-printed zinc-ion battery developed by UCLA researchers

July 8, 2026

3D Printing Industry Features Our 3D-Printed Zinc Battery Research

3D Printing Industry highlights our UCLA-led research on a 3D-printed zinc-ion hybrid battery delivering more than sevenfold higher charge storage, along with a low-cost 3D-printed test cell designed to improve the reliability of battery testing.

3D-printed electrode for high-capacity zinc-ion hybrid energy storage

July 4, 2026

Motor.es Features Our 3D-Printed Zinc Battery Research

Motor.es highlights our UCLA research on 3D-printed zinc-ion batteries, featuring their high energy-storage capacity, long cycle life, and potential as a sustainable alternative to lithium.

3D-printed zinc-ion battery research developed at UCLA

July 3, 2026

Electronics For You Features Our 3D-Printed Zinc Battery Research

Electronics For You highlights our UCLA research on a 3D-printed zinc-ion hybrid battery that stores more than seven times the charge of comparable systems while demonstrating strong performance over 1,500 cycles.

3D-printed zinc-ion hybrid battery electrode developed by UCLA researchers

July 3, 2026

3DPrint.com Features Our 3D-Printed Zinc-Ion Battery Research

3DPrint.com highlights our UCLA research on a 3D-printed zinc-ion hybrid battery that stores more than seven times the energy of comparable devices, with potential applications in renewable and grid-scale energy storage.

3D-printed zinc-ion hybrid battery developed by UCLA researchers

June 30, 2026

Our 3D-Printed Zinc Battery Research Featured on YouTube

A video feature highlights our UCLA research on a 3D-printed zinc-ion hybrid battery that stores more than seven times the charge of comparable systems, offering a promising pathway toward lower-cost, longer-lasting grid-scale energy storage.

Video feature on UCLA 3D-printed zinc-ion battery research

June 30, 2026

ScienceSprings Features Our 3D-Printed Zinc Battery Research

ScienceSprings features our UCLA-led research on a 3D-printed zinc-ion hybrid battery that stores more than seven times the charge of comparable devices, highlighting its potential for affordable and sustainable grid-scale energy storage.

3D-printed zinc-ion hybrid battery electrode developed by UCLA researchers

June 30, 2026

Interesting Engineering Features Our 3D-Printed Zinc Battery Research

Interesting Engineering highlights our UCLA research on 3D-printed zinc-ion hybrid batteries, demonstrating how advanced electrode architectures can dramatically increase charge storage while enabling safer and more sustainable energy storage.

UCLA 3D-printed zinc-ion hybrid battery research

June 30, 2026

VoxelMatters Features Our 3D-Printed Zinc-Ion Battery Research

VoxelMatters highlights our UCLA research using 3D printing to create high-surface-area electrodes that enable zinc-ion hybrid batteries to store more than seven times the charge of comparable devices.

UCLA researchers developing high-capacity 3D-printed zinc-ion hybrid batteries

June 29, 2026

UCLA Newsroom Features Our 3D-Printed Zinc-Ion Battery Research

UCLA Newsroom highlights our 3D-printed zinc-ion hybrid battery that stores more than seven times the charge of comparable devices, offering a promising approach for sustainable, grid-scale energy storage.

3D-printed zinc-ion hybrid battery developed by UCLA researchers

June 29, 2026

UCLA Chemistry Highlights Our 3D-Printed Zinc-Ion Battery Research

UCLA Chemistry highlights our research on a 3D-printed zinc-ion hybrid battery that stores more than seven times the charge of comparable devices, along with a new 3D-printed test cell designed to improve the reliability of energy-storage research.

UCLA 3D-printed zinc-ion hybrid battery research led by researchers in the Department of Chemistry and Biochemistry

MI

© 2025 by Maher El-Kady

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