氧化还原
化学
非生物成分
锰
氧化物
电化学
无机化学
化学工程
电极
地质学
有机化学
物理化学
工程类
古生物学
作者
Haesung Jung,Martial Taillefert,Jingying Sun,Qian Wang,Olaf J. Borkiewicz,Pan Liu,Lufeng Yang,Shuo Chen,Hailong Chen,Yuanzhi Tang
摘要
Mn oxides are among the most ubiquitous minerals on Earth and play critical roles in numerous elemental cycles in biotic/abiotic loops as the key redox center. Yet, it has long puzzled geochemists why the laboratory synthesis of todorokite, a tunnel-structured Mn oxide, is extremely difficult while it is the dominant form over other tunneled phases in low-temperature natural environments. This study employs a novel electrochemical method to mimic the cyclic redox reactions occurring over long geological time scales in an accelerated manner. The results revealed that the kinetics and electron flux of the cyclic redox reaction are key to the layer-to-tunnel structure transformation of Mn oxides, provided new insights for natural biotic and abiotic redox reactions, and explained the dominance of todorokite in nature.
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