TY - JOUR
T1 - Core-shell Fe2O3@La1−xSrxFeO3−δ material for catalytic oxidations
T2 - Coverage of iron oxide core, oxygen storage capacity and reactivity of surface oxygens
AU - Ohayon Dahan, Hen
AU - Landau, Miron V.
AU - Vidruk Nehemya, Roxana
AU - Edri, Eran
AU - Herskowitz, Moti
AU - Ruan, Chongyan
AU - Li, Fanxing
N1 - Funding Information:
Funding: This research was funded by US—Israel Binational Science Foundation, grant No. 2019613 and CBET-1923468.
Publisher Copyright:
© 2021 by the authors. Licensee MDPI, Basel, Switzerland.
PY - 2021/12/1
Y1 - 2021/12/1
N2 - A series of Fe2O3@LSF (La0.8Sr0.2FeO3−δ perovskite) core-shell materials (CSM) was prepared by infiltration of LSF precursors gel containing various complexants and their mixtures to nanocrystalline aggregates of hematite followed by thermal treatment. The content of LSF phase and amount of carboxyl groups in complexant determine the percent coverage of iron oxide core with the LSF shell. The most conformal coating core-shell material was prepared with citric acid as the complexant, contained 60 wt% LSF with 98% core coverage. The morphology of the CSM was studied by HRTEM-EELS combined with SEM-FIB for particles cross-sections. The reactivity of surface oxygen species and their amounts were determined by H2-TPR, TGA-DTG, the oxidation state of surface oxygen ions by XPS. It was found that at complete core coverage with perovskite shell, the distribution of surface oxygen species according to redox reactivity in CSM resemble pure LSF, but its lattice oxygen storage capacity is 2–2.5 times higher. At partial coverage, the distribution of surface oxygen species according to redox reactivity resembles that in iron oxide.
AB - A series of Fe2O3@LSF (La0.8Sr0.2FeO3−δ perovskite) core-shell materials (CSM) was prepared by infiltration of LSF precursors gel containing various complexants and their mixtures to nanocrystalline aggregates of hematite followed by thermal treatment. The content of LSF phase and amount of carboxyl groups in complexant determine the percent coverage of iron oxide core with the LSF shell. The most conformal coating core-shell material was prepared with citric acid as the complexant, contained 60 wt% LSF with 98% core coverage. The morphology of the CSM was studied by HRTEM-EELS combined with SEM-FIB for particles cross-sections. The reactivity of surface oxygen species and their amounts were determined by H2-TPR, TGA-DTG, the oxidation state of surface oxygen ions by XPS. It was found that at complete core coverage with perovskite shell, the distribution of surface oxygen species according to redox reactivity in CSM resemble pure LSF, but its lattice oxygen storage capacity is 2–2.5 times higher. At partial coverage, the distribution of surface oxygen species according to redox reactivity resembles that in iron oxide.
KW - Core-shell morphology
KW - Iron oxide
KW - Lanthanum iron strontium perovskite
KW - Reactive oxygen species
UR - http://www.scopus.com/inward/record.url?scp=85120385891&partnerID=8YFLogxK
U2 - 10.3390/ma14237355
DO - 10.3390/ma14237355
M3 - Article
C2 - 34885506
AN - SCOPUS:85120385891
SN - 1996-1944
VL - 14
JO - Materials
JF - Materials
IS - 23
M1 - 7355
ER -