Business Wire

Joint Tsinghua-Liverpool Research Team Discover New Charge Storage Mechanism

Share

Due to their high energy density and low cost, metal-air batteries are one of the most promising power sources of the future. A joint Tsinghua-Liverpool research team has recently developed a new charge storage mechanism that allows rechargeability within calcium-air batteries - a major step forward in battery technology.

This press release features multimedia. View the full release here: https://www.businesswire.com/news/home/20210816005031/en/

To view this piece of content from mms.businesswire.com, please give your consent at the top of this page.

Lu in Prof Hu’s lab where he set up experiments to cross compare results obtained at NTHU and at UoL.(Photo: National Tsing Hua University)

This discovery has been published in Chemical Science. The lead author of the paper, Yi-Ting Lu, is a joint doctoral student at Tsinghua and Liverpool, whose supervisors are Prof. Chi-Chang Hu (Department of Chemical Engineering, NTHU) and Prof. Laurence Hardwick (Department of Chemistry, UoL).

A major breakthrough related to Ca-air batteries

Prof. Hu said conventional lithium-ion batteries have a limited practical capacity. Thereby many researchers are working on developing alternative battery technologies. Their focus is on metal-air batteries based on zinc, lithium, sodium, potassium, calcium, magnesium, and aluminum. The advantage of the calcium-air battery is its high specific energy—five times that of traditional lithium-ion batteries. However, the feasibility of calcium-air batteries remains hampered by one major drawback—it cannot be recharged.

Lu explained that metal-air batteries are electrochemical cells usually using an active metal as the negative electrode, and a porous carbon material in contact with the air as the positive electrode. When the metal oxidized the oxygen at the positive electrode is reduced, generating electric current.

After completing his first year of doctoral studies at NTHU, Lu enrolled at the Stephenson Institute for Renewable Energy at UoL in September 2018. Under the supervision of Prof. Hardwick, he began doing research on the electrolyte used in calcium-air batteries.

Lu found when a single electrode is repeatedly charged and discharged, initially no reversibility can be observed, but after a few dozen cycles it gradually displays some reversibility. Surprisingly, the result seemed completely different from those in literature. The research team conducted a series of experiments aimed at uncovering the mechanism behind this phenomenon. On the electrode surface, the discharge products form a calcium oxide (CaxOy) interlayer, where the discharge product of oxygen, known as superoxide, is confined, allowing the superoxide to be then readily oxidized. This suggests the oxygen could probably be repeatedly oxidized/reduced, so that the cell can be continuously discharged/recharged.

Dr. Alex Neale, a Liverpool postdoctoral researcher, who is also part of the research team, said that through systematic electrochemical and spectroscopy investigations, the team began to understand the origins of this charge storage mechanism that facilitates a previously unseen degree of reversibility for systems based on the calcium-air battery.

Prof. Hardwick said the team will focus on designing new battery systems that use this newly discovered charge storage mechanism. He added that it was the cooperative research that made their discovery possible, and there are plans for even closer cooperation between NTHU and UoL in the future.

To view this piece of content from cts.businesswire.com, please give your consent at the top of this page.

Contact information

Holly Hsueh
NTHU
(886)3-5162006
hoyu@mx.nthu.edu.tw

About Business Wire

For more than 50 years, Business Wire has been the global leader in press release distribution and regulatory disclosure.

Subscribe to releases from Business Wire

Subscribe to all the latest releases from Business Wire by registering your e-mail address below. You can unsubscribe at any time.

Latest releases from Business Wire

Tinnitus Research: Novel Compound AC102 Makes Constant Ear Noise Disappear in Preclinical Model3.7.2025 13:02:00 EEST | Press release

The novel compound AC102 almost completely reversed tinnitus in a preclinical model after a single dose. At the same time, the damaged connections between the auditory nerve and inner ear sensory cells were restored. These findings were recently published in the prestigious International Journal of Molecular Sciences in a joint study conducted by Erlangen University Hospital and Berlin-based drug developer AudioCure. As there is currently no causal treatment for tinnitus, there is a high medical need. This press release features multimedia. View the full release here: https://www.businesswire.com/news/home/20250702168211/en/ In 10-20% of tinnitus cases, the noise in the ear is so severe that it significantly impairs the quality of life of those affected. (Source: AI-generated) In the current study, AC102 was administered to the middle ear of one experimental group after acoustic trauma, while a second group received a placebo. Although both groups initially showed signs of tinnitus, th

H2SITE Secures EIC Accelerator Funding to Deploy a Flagship 1 TPD Ammonia Cracker Using Membrane Reactor Technology at a Port in North-West Europe3.7.2025 09:40:00 EEST | Press release

H2SITE has been awarded the EIC (European Innovation Council) Accelerator program for a project aimed at deploying a first-of-its-kind ammonia cracking unit capable of producing 1 ton of high-purity hydrogen per day. The system is based on H2SITE’s proprietary palladium-based membrane reactor technology, which enables the simultaneous catalytic decomposition of ammonia and selective hydrogen separation within a single unit. This press release features multimedia. View the full release here: https://www.businesswire.com/news/home/20250702142283/en/ Ammonia Cracker using Membrane Reactor Technology This breakthrough technology offers several compelling advantages over conventional ammonia cracking processes: Lowest Levelized Cost of Hydrogen (LCOH) from ammonia due to high efficiency and integrated operation Reduced energy consumption, operating at significantly lower temperatures (400–450 °C) than traditional cracking methods (typically 600–800 °C) High-purity hydrogen output, compliant

ISDA and Ant International Lead New Industry Report on Use of Tokenised Bank Liabilities for FX Settlement and Cross-Border Payments Under Project Guardian3.7.2025 09:00:00 EEST | Press release

The International Swaps and Derivatives Association (ISDA) and Ant International led the Project Guardian FX industry group to develop a new report for implementing tokenised bank liabilities and shared ledger in cross-border payments and foreign exchange (FX) settlement. This press release features multimedia. View the full release here: https://www.businesswire.com/news/home/20250702791535/en/ Report on Use of Tokenised Bank Liabilities for Transaction Banking by ISDA and Ant International, under the Monetary Authority of Singapore's (MAS) Project Guardian The joint report is produced under the Monetary Authority of Singapore's (MAS) Project Guardian, a global collaboration between policymakers and key industry players to enhance liquidity and efficiency of financial markets through asset tokenisation. ISDA and Ant International are members of the industry group and lead the FX workstream to develop FX data specifications, risk management frameworks and FX documentation. Other contri

Curve Pay and Thales Join Forces to Securely Transform Digital Wallets on iPhone3.7.2025 09:00:00 EEST | Press release

Curve, the ultimate digital wallet, today announced deepening its collaboration with Thales, the global leader in advanced technologies, delivering secure modern payment solutions for financial institutions. This press release features multimedia. View the full release here: https://www.businesswire.com/news/home/20250702696837/en/ Thales D1 Platform to power CURVE PAY (Photo: Thales) This partnership comes on the back of Curve launching Curve Pay on iOS, marking a watershed moment in mobile payments. This partnership is a significant step to reshaping everyday spending, allowing Curve customers to benefit from NFC payment directly in the Curve App for contactless payments in store for all end-users on iOS and Android. Curve Pay is underpinned by Thales’ D1 platform on iOS and Android in Europe which allows customers to digitize a payment card through a mobile wallet. The cloud-based D1 platform operates in real time, enabling seamless integration with existing systems to deliver secur

Medimaps Group Launches In Europe TBS Osteo Next-Generation Software For Advanced Bone Microarchitecture Assessment3.7.2025 09:00:00 EEST | Press release

Medimaps Group S.A., a global leader in AI-driven bone microarchitecture imaging solutions, announces the European launch of its MDR-cleared next-generation TBS Osteo Advanced software. Following the product launch in the United States last month, this next milestone reflects the company's commitment to advancing osteoporosis detection and bone health management worldwide. This press release features multimedia. View the full release here: https://www.businesswire.com/news/home/20250702082335/en/ Medimaps' TBS Osteo next-generation software The TBS Osteo Advanced software delivers refined correction for soft tissue thickness anterior to the lumbar spine, ensuring inclusivity of TBS assessment across a wide range of body phenotypes. It also introduces new system management capabilities, allowing hospitals and healthcare networks to centrally manage the TBS software on their DXA systems fleet, and to standardize workflows across multiple locations. These improvements enhance operational

In our pressroom you can read all our latest releases, find our press contacts, images, documents and other relevant information about us.

Visit our pressroom
World GlobeA line styled icon from Orion Icon Library.HiddenA line styled icon from Orion Icon Library.Eye