2020Nanoscale AdvancesOpen access

Further insights into the Fe( ii ) reduction of 2-line ferrihydrite: a semi in situ and in situ TEM study

Mario Alberto Gomez, Ruonan Jiang, Miao Song, Dongsheng Li, Scott Lea, Xu Ma, Haibo Wang, Xiuling Yin, Shaofeng Wang, Yongfeng Jia

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Abstract

dissolution-reprecipitation or surface nucleation-solid state conversion mechanisms. Rather, as we demonstrate here, it is an intricate chemical process that goes through a series of intermediate steps not visible through conventional lab or synchrotron bulk techniques. However, such intermediate steps may affect the environmental fate, bioavailability, and transport of elements of such nano-particles in aqueous environments.

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dissolution-reprecipitation or surface nucleation-solid state conversion mechanisms. Rather, as we demonstrate here, it is an intricate chemical process that goes through a series of intermediate steps not visible through conventional lab or synchrotron bulk techniques. However, such intermediate steps may affect the environmental fate, bioavailability, and transport of elements of such nano-particles in aqueous environments.

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Available abstract

dissolution-reprecipitation or surface nucleation-solid state conversion mechanisms. Rather, as we demonstrate here, it is an intricate chemical process that goes through a series of intermediate steps not visible through conventional lab or synchrotron bulk techniques. However, such intermediate steps may affect the environmental fate, bioavailability, and transport of elements of such nano-particles in aqueous environments.

Key concepts: Ferrihydrite, Lepidocrocite, Dissolution, Nucleation, Goethite, Magnetite, Hematite, Amorphous solid

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