Direct observation using high resolution transmission electron microscopy reveals that precipitated iron(II) monosulfide, FeS, consists of nanocrystalline mackinawite particles. The individual nanocrystals are laminar rectilinear prisms displaying a continuum of particle sizes from 2 to 5.7 nm in thickness (the direction parallel to the c axis) and from 3 to 10.8 nm in length. The corresponding mean specific surface area is estimated to be to 380 ± 10 m2/g. The d001 of mackinawite nanocrystals obtained from precipitated FeS and freeze-dried FeS by electron diffraction are 5.19 and 5.08 Å, respectively. The effect of water on the nanoparticle structures is indicated by the formation of curved structures and infrequent dislocations in an anhy...
Nearly monodisperse iron oxide colloidal nanocrystals prepared by nonhydrolytic high-temperature sol...
Naturally-occurring iron nanoparticles constitute a quantitatively-important and biogeochemically-ac...
The properties of nanocrystals are highly dependent on their morphology, composition and structure. ...
Direct observation using high resolution transmission electron microscopy reveals that precipitated ...
Synthetic Fe2+ monosulfide, FeSam, displays a disordered tetragonal mackinawite structure. It is nan...
The primary FeS precipitate formed from the reaction between Fe(II) and S(-II) in aqueous solutions ...
Iron sufides are important mineral phases in natural environments where they control global elementa...
Increasing interest in environmental geochemistry has led to the recognition that crystals with size...
Core-shell structured Fe nanoparticles (NPs) produced by high pressure magnetron sputtering gas cond...
<p><b>A</b>, Transmission Electron Microscopy (TEM) images collected from a drop of suspension after...
Iron sulfide nanoparticles assume an important role within a wide range of geological settings as in...
Nanoparticles (NPs) are defined as particles with at least one dimension between 1 and 100 nm or wit...
Iron sulfide nanoparticles assume an important role within a wide range of geological settings as in...
In this study, we investigated the size, submicrometer-scale structure, and aggregation state of ZnS...
Synthetic analogs of naturally occurring nanoparticles have been studied by a range of X-ray techniq...
Nearly monodisperse iron oxide colloidal nanocrystals prepared by nonhydrolytic high-temperature sol...
Naturally-occurring iron nanoparticles constitute a quantitatively-important and biogeochemically-ac...
The properties of nanocrystals are highly dependent on their morphology, composition and structure. ...
Direct observation using high resolution transmission electron microscopy reveals that precipitated ...
Synthetic Fe2+ monosulfide, FeSam, displays a disordered tetragonal mackinawite structure. It is nan...
The primary FeS precipitate formed from the reaction between Fe(II) and S(-II) in aqueous solutions ...
Iron sufides are important mineral phases in natural environments where they control global elementa...
Increasing interest in environmental geochemistry has led to the recognition that crystals with size...
Core-shell structured Fe nanoparticles (NPs) produced by high pressure magnetron sputtering gas cond...
<p><b>A</b>, Transmission Electron Microscopy (TEM) images collected from a drop of suspension after...
Iron sulfide nanoparticles assume an important role within a wide range of geological settings as in...
Nanoparticles (NPs) are defined as particles with at least one dimension between 1 and 100 nm or wit...
Iron sulfide nanoparticles assume an important role within a wide range of geological settings as in...
In this study, we investigated the size, submicrometer-scale structure, and aggregation state of ZnS...
Synthetic analogs of naturally occurring nanoparticles have been studied by a range of X-ray techniq...
Nearly monodisperse iron oxide colloidal nanocrystals prepared by nonhydrolytic high-temperature sol...
Naturally-occurring iron nanoparticles constitute a quantitatively-important and biogeochemically-ac...
The properties of nanocrystals are highly dependent on their morphology, composition and structure. ...