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Tung, Ching-Wei, et al. "Spin crossover-driven diiron electrocatalyst boosts sustainable water oxidation." Nature Sustainability (2025): 1-13.

update date : 2025-06-17

This month (June 2, 2025), Prof. Ching-Wei Tung from our department, in collaboration with a research team from National Taiwan University, published a significant research achievement in the prestigious international journal Nature Sustainability (IF 26.2).

The team successfully developed a bimetallic iron molecular electrocatalyst designed through a spin-crossover-driven dimerization strategy. This catalyst exhibited low overpotential, high turnover frequency (TOF), and excellent long-term stability in water-splitting hydrogen evolution reactions.

This breakthrough not only advances the theoretical foundation of molecular catalyst design but also provides a key synthetic direction for the development of efficient and sustainable hydrogen production materials—injecting new momentum into future hydrogen energy applications and net-zero carbon energy systems.


中文:材料工程系童敬維老師與台灣大學團隊於《Nature Sustainability》發表綠色氫能重大突破研究成果!開發出高性能分子電催化劑。
This article is simultaneously published in the 31th edition of the SDGs E-paper.

Source: Department of Materials Engineering
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