A STUDY OF THE CATALYTIC PROPERTIES OF PE ROVSKITE-TYPE OXIDES LAMNYCO1-YO3 .2. THE INTERACTION BETWEEN TRANSITION-METAL IONS AND THEIR CATALYTIC PROPERTY IN AMMONIA OXIDATION
St. Liu et al., A STUDY OF THE CATALYTIC PROPERTIES OF PE ROVSKITE-TYPE OXIDES LAMNYCO1-YO3 .2. THE INTERACTION BETWEEN TRANSITION-METAL IONS AND THEIR CATALYTIC PROPERTY IN AMMONIA OXIDATION, Huaxue xuebao, 52(11), 1994, pp. 1076-1081
It has been found that the interaction between the two transition meta
l Mn, Co ions on B-site and their Redox property an the important fact
ors influencing the NO-selectivity in ammonia oxidation. The NO-select
ivity is related to the redox ability of Mn3+ --> Mn4+ or Co2+, Co3+,
which could be promoted by doping a small amount of foreign transition
metal ions on B-site of matrix samples, but not for the sample with t
he composition of y = 0.5. In Mn-rich region (y > 0.5), the magnetic p
roperty and NO-selectivity are controlled by the ferromagnetic superex
change of Mn3+-O2--Mn4+. The main factor influencing the NO-selectivit
y of Co-rich samples (y < 0.5) is the concentration of Co2+ and Co-III
ions, The strong ferromagnetism of the sample with the composition of
y = 0.5 may be due to its crystal structure, and the redox between Mn
3+ and Co3+ is unfavorable for the producing of NO. There exists a clo
se relationship between the NO-selectivity and the valence, d-electron
configuration, electron transmission rate and the interaction between
the electrons.