Oxidation induced strain and defects in magnetite crystals

  • Yuan, Ke
  • Lee, Sang Soo
  • Cha, Wonsuk
  • Ulvestad, Andrew
  • Kim, Hyunjung
  • 외 3명
Citations

WEB OF SCIENCE

60
Citations

SCOPUS

56

초록

Oxidation of magnetite (Fe3O4) has broad implications in geochemistry, environmental science and materials science. Spatially resolving strain fields and defect evolution during oxidation of magnetite provides further insight into its reaction mechanisms. Here we show that the morphology and internal strain distributions within individual nano-sized (similar to 400 nm) magnetite crystals can be visualized using Bragg coherent diffractive imaging (BCDI). Oxidative dissolution in acidic solutions leads to increases in the magnitude and heterogeneity of internal strains. This heterogeneous strain likely results from lattice distortion caused by Fe(II) diffusion that leads to the observed domains of increasing compressive and tensile strains. In contrast, strain evolution is less pronounced during magnetite oxidation at elevated temperature in air. These results demonstrate that oxidative dissolution of magnetite can induce a rich array of strain and defect structures, which could be an important factor that contributes to the high reactivity observed on magnetite particles in aqueous environment.

키워드

X-RAY-DIFFRACTIONIRON ISOTOPE FRACTIONATIONSPECTROSCOPIC EVIDENCEDISSOLUTION KINETICSDISLOCATION LOOPSCATION DIFFUSIONATOM EXCHANGEREDUCTIONDYNAMICSNANOPARTICLES
제목
Oxidation induced strain and defects in magnetite crystals
저자
Yuan, KeLee, Sang SooCha, WonsukUlvestad, AndrewKim, HyunjungAbdilla, BekturSturchio, Neil C.Fenter, Paul
DOI
10.1038/s41467-019-08470-0
발행일
2019-02-11
유형
Article
저널명
Nature Communications
10
1