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Water molecule unlocks faster interfacial polymerization by lowering energy barrier

Water molecule unlocks faster interfacial polymerization by lowering energy barrier
Key Points

Researchers at The Hong Kong University of Science and Technology (HKUST) have achieved two major breakthroughs in interfacial polymerization, a key technique for preparing advanced functional materials. By integrating quantum mechanics with machine learning, the team has elucidated the mechanism by which water molecules facilitate reactions at the molecular level. At the same time, it has transformed microcapsule design from a traditional trial-and-error approach into a predictive science.

Researchers at The Hong Kong University of Science and Technology (HKUST) have achieved two major breakthroughs in interfacial polymerization, a key technique for preparing advanced functional materials. By integrating quantum mechanics with machine learning, the team has elucidated the mechanism by which water molecules facilitate reactions at the molecular level. At the same time, it has transformed microcapsule design from a traditional trial-and-error approach into a predictive science.
The Hong Kong University of Science and Technology (ORG)
Originally published by Phys.org Read original →