Research output: Contribution to journal › Article › peer-review
Double complex salts containing [Pt(NO3)6]2- anion and Rh(III) complex cations: Synthesis, structure and utilisation for preparing (Rh–Pt)/CeO2 catalysts. / Vasilchenko, Danila; Topchiyan, Polina; Baidina, Iraida et al.
In: Journal of Molecular Structure, Vol. 1211, 128108, 05.07.2020.Research output: Contribution to journal › Article › peer-review
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TY - JOUR
T1 - Double complex salts containing [Pt(NO3)6]2- anion and Rh(III) complex cations: Synthesis, structure and utilisation for preparing (Rh–Pt)/CeO2 catalysts
AU - Vasilchenko, Danila
AU - Topchiyan, Polina
AU - Baidina, Iraida
AU - Korolkov, Ilya
AU - Filatov, Evgeny
AU - Zvereva, Valentina
AU - Plyusnin, Pavel
AU - Slavinskaya, Elena
AU - Gerasimov, Evgeny
N1 - This work was supported by the Russian Science Foundation (RSF grant 18-73-00054). The authors deeply acknowledge Dr. Zubareva A.P. for assistance with CHN analysis.
PY - 2020/7/5
Y1 - 2020/7/5
N2 - Three new double complex salts (DCSs) containing [Pt(NO3)6]2- anion and Rh(III) metalorganic cations [Rh(4-pic)4Cl2]2[Pt(NO3)6] (1,4-pic = 4-methylpyridine), [Rh(bpy)3]2[Pt(NO3)6]3 (2, bpy = 2,2′-bipyridiine) and [Rh(bpy)3][Pt(NO3)6](NO3)(CH3COCH3)(CH3CN)(H2O) (3) were prepared and characterised by elemental analysis and infrared spectroscopy. Crystal structures of 1 and 3 were determined using X-ray single crystal analysis. Thermal decomposition of salts 1 and 2 in various atmospheres (He, He/H2, air) was shown to yield Rh–Pt solid solutions with a Rh:Pt ratio inherited from the starting salt composition. The Rh0·67Pt0·33/CeO2 catalyst was prepared by thermal decomposition of salt 1 supported on a CeO2 surface. The catalyst was tested in a CO oxidation reaction and demonstrated full conversion of CO from about 145 °C at gas hourly space velocity of 200 000 ml g−1 h−1.
AB - Three new double complex salts (DCSs) containing [Pt(NO3)6]2- anion and Rh(III) metalorganic cations [Rh(4-pic)4Cl2]2[Pt(NO3)6] (1,4-pic = 4-methylpyridine), [Rh(bpy)3]2[Pt(NO3)6]3 (2, bpy = 2,2′-bipyridiine) and [Rh(bpy)3][Pt(NO3)6](NO3)(CH3COCH3)(CH3CN)(H2O) (3) were prepared and characterised by elemental analysis and infrared spectroscopy. Crystal structures of 1 and 3 were determined using X-ray single crystal analysis. Thermal decomposition of salts 1 and 2 in various atmospheres (He, He/H2, air) was shown to yield Rh–Pt solid solutions with a Rh:Pt ratio inherited from the starting salt composition. The Rh0·67Pt0·33/CeO2 catalyst was prepared by thermal decomposition of salt 1 supported on a CeO2 surface. The catalyst was tested in a CO oxidation reaction and demonstrated full conversion of CO from about 145 °C at gas hourly space velocity of 200 000 ml g−1 h−1.
KW - CO oxidation
KW - Complex salts
KW - Platinum
KW - Rhodium
KW - Solid solutions
KW - Thermal decomposition
KW - OXIDATION
KW - PERFORMANCE
KW - SINGLE-SOURCE PRECURSORS
KW - CRYSTAL-STRUCTURES
KW - CO
KW - THERMAL-DECOMPOSITION
KW - RH
KW - METAL
KW - NANOALLOYS
KW - PLATINUM(IV)
UR - http://www.scopus.com/inward/record.url?scp=85082384870&partnerID=8YFLogxK
U2 - 10.1016/j.molstruc.2020.128108
DO - 10.1016/j.molstruc.2020.128108
M3 - Article
AN - SCOPUS:85082384870
VL - 1211
JO - Journal of Molecular Structure
JF - Journal of Molecular Structure
SN - 0022-2860
M1 - 128108
ER -
ID: 23892675