Add BrightSurf on Google Email

Hanyang University ERICA researchers uncover a hidden battery flaw that may shorten EV lifespans

07.28.26 | Hanyang University Research Strategy Planning Team
Meta Quest 3 512GB

Meta Quest 3 512GB enables immersive mission planning, terrain rehearsal, and interactive STEM demos with high-resolution mixed-reality experiences.


As the need for sustainable electric vehicles increases, cobalt-free high-nickel cathode batteries (such as manganese-coated nickel core batteries) have emerged as one of the most promising technologies. These batteries increase the driving range while reducing dependence on expensive critical minerals. However, a new study suggests that a hidden weakness in the battery material could significantly reduce the lifespan of these next-generation batteries.

A research team led by Professor Jin Ho Bang along with PhD Scholar JinHa Shim from Hanyang University, South Korea has discovered that simply exposing precursor materials used to manufacture these cathodes to air can trigger subtle chemical changes that later accelerate battery degradation. The study reveals an overlooked challenge in battery production and provides a practical strategy to improve long-term performance. The findings of the study were made available online on May 13, 2026 and were published in Volume 19, Issue 12 of the journal Energy and Environmental Science on June 23, 2026.

The team observed that manganese, an element which is commonly used to stabilize high-nickel cathodes, can unexpectedly become a source of instability under certain manufacturing conditions. The storage of precursor materials in air exposed areas leads to the oxidation of manganese on the particle surface which then results in the formation of defective regions enriched with “Jahn-Teller distorted” manganese species. These distorted surfaces become highly reactive, leading to electrolyte decomposition, transition-metal dissolution and damaging reactions with the graphite anode. In nickel-rich battery systems, this hidden defect can nearly double the rate of capacity fading during extended battery cycling tests.

We found that a manganese-rich shell, which is normally introduced to protect high-nickel cathodes, can instead become a catalyst for degradation if the precursor chemistry is not carefully controlled ,” explains Prof. Bang, “ Even small variations in precursor storage history can substantially affect battery stability .”

To overcome this problem, the researchers suggest a simple solution. By increasing the amount of excess lithium during synthesis, they could suppress the formation of defective surface phase and restore stable manganese-oxygen bonding. These modified cathodes could retain more than 90% of their capacity, demonstrating a significant improvement in long-term durability.

While global efforts to lower battery costs and reduce reliance on cobalt have been rapidly driving the development of ultra-high-nickel and manganese-rich cathodes for electric vehicles, this study offers critical guidance to the industry. Moreover, the study highlights that eliminating cobalt alone is insufficient; understanding how manganese chemistry evolves during manufacturing is equally important.

“Our results show that even minor variations in precursor history can have major consequences for battery performance, making precursor management an important consideration for large-scale manufacturing ,” adds Prof. Bang. Instead of requiring expensive coatings or major redesigns of production lines, careful control of precursor handling and lithium stoichiometry could provide a comparatively upfront route towards more durable batteries. These improvements could eventually translate into electric vehicles with longer battery lifetimes and also benefit large-scale energy storage systems that would require stable, high-energy batteries for renewable energy applications in future.

***

Reference
DOI: 10.1039/d6ee00713a

About Hanyang University ERICA
Hanyang University ERICA (Education Research Industry Cluster at Ansan) is a prominent research-focused campus established in 1979 in Ansan, South Korea. ERICA offers undergraduate and graduate programs. ERICA is renowned for its active industry-university cooperation, offering students hands-on experience through partnerships with various industries. This ensures that graduates are well-prepared to meet societal needs and excel in their respective fields. With state-of-the-art facilities and a supportive learning environment, Hanyang University ERICA empowers students to pursue their passions and contribute meaningfully to society, staying true to the university's founding philosophy of "Love in Deed and Truth."
Website: https://www.hanyang.ac.kr/web/eng/erica-campus1

About Professor Jin Ho Bang
Prof. Jin Ho Bang is a Professor in the Department of Energy and Bio Sciences at Hanyang University, Republic of Korea. He leads the Nanostructured Energy Materials Laboratory (NEML), where his research focuses on developing advanced inorganic and nanostructured materials for energy storage and conversion technologies. His work spans lithium-ion batteries, water-splitting systems, and photoelectrochemical devices, with a particular emphasis on designing next-generation materials for sustainable energy applications.

About Researcher JinHa Shim
JinHa Shim is a Ph.D. candidate in the Department of Energy and Bio Sciences at Hanyang University, Republic of Korea. His research focuses on lithium-ion batteries, particularly high-nickel cathode materials and electrode–electrolyte interfacial chemistry. His current work specializes in understanding how precursor chemistry and interfacial reactions influence material structure, with the goal of designing more stable and durable next-generation battery materials for electric vehicles and energy storage applications .

Energy & Environmental Science

10.1039/d6ee00713a

Experimental study

Not applicable

Precursor-driven Jahn–Teller distortion as a hidden origin of surface instability in Mn-stabilized Ni-rich cathodes

23-Jun-2026

There are no conflicts to declare.

Keywords

Article Information

Contact Information

Jin-Mo An
Hanyang University
eshresearch@hanyang.ac.kr

Source

This article is based on a news release from Hanyang University Research Strategy Planning Team. BrightSurf curates and republishes science news from research institutions worldwide; the original release is linked below.

How to Cite This Article

APA:
Hanyang University Research Strategy Planning Team. (2026, July 28). Hanyang University ERICA researchers uncover a hidden battery flaw that may shorten EV lifespans. Brightsurf News. https://www.brightsurf.com/news/86Z0DXM8/hanyang-university-erica-researchers-uncover-a-hidden-battery-flaw-that-may-shorten-ev-lifespans.html
MLA:
"Hanyang University ERICA researchers uncover a hidden battery flaw that may shorten EV lifespans." Brightsurf News, Jul. 28 2026, https://www.brightsurf.com/news/86Z0DXM8/hanyang-university-erica-researchers-uncover-a-hidden-battery-flaw-that-may-shorten-ev-lifespans.html.