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在线翻译:
szdaily -> Tech -> 
New method for platinum-group catalyst synthesis
    2026-07-29  08:53    Shenzhen Daily

CHINESE researchers have developed a millisecond-scale thermal pulse technology enabling the ultra-fast synthesis and precise control of platinum-group catalysts, which is expected to give a boost to China’s carbon reduction goals and energy security strategy.

The research team at Tianjin University proposed a transient assembly strategy for preparing platinum-group metal core-shell catalysts, offering a new route for improving hydrogen fuel cell performance. The findings were published in the journal Science on July 10.

“The technology offers strong technical support for China’s strategic industries, including green hydrogen and advanced energy materials, and can contribute to the country’s carbon reduction goals and energy security strategy,” said Hu Wenbin, a professor at Tianjin University and corresponding author of the paper.

Platinum-group catalysts play a critical role in modern energy, chemical and environmental industries. Building core-shell structures composed of platinum-group metals and non-precious metals with high efficiency and precision is key to achieving both high catalytic activity and reduced use of precious metals.

These structures can activate the high catalytic performance of platinum-group metals through atomic coupling at the core-shell interface, which induces finely tuned lattice strain and ligand effects.

The new approach represents a fundamental innovation in the synthesis mechanism and brings major improvements to catalyst manufacturing, according to the study.

A conventional multistep process that usually takes several hours and involves different devices can be completed within minutes. The method can produce a precisely controlled three-atomic-layer platinum shell, helping optimize geometric and electronic effects and fully release catalytic activity. The technology also reduces the energy consumption required to synthesize catalysts per unit mass by 90% and avoids the use of hazardous or highly polluting reagents.

Catalysts synthesized through the new method achieved a rated power of 15.2 kilowatts per gram of platinum in hydrogen fuel cells, while also showing excellent durability.(Xinhua)

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