Catalytic properties of monometallic and bimetallic palladium and rhodium nanoparticles obtained in reverse micellar systems

In this paper, the results of the adsorption and catalytic properties of the mono- and bimetallic palladium and rhodium nanoparticles (0.7–6.5 nm) impregnated on γ-Al2O3 were presented. Metal nanoparticles were obtained in reverse micelles by two reduction methods: radiation-chemical and chemical re...

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Main Authors: Sergeev Mihail O., Revina Alexandra A., Busev Sergey A., Zolotarevskiy Victor I., Zhavoronkova Kseniya N., Boeva Olga A.
Format: Article
Language:English
Published: De Gruyter 2014-10-01
Series:Nanotechnology Reviews
Subjects:
Online Access:https://doi.org/10.1515/ntrev-2014-0011
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author Sergeev Mihail O.
Revina Alexandra A.
Busev Sergey A.
Zolotarevskiy Victor I.
Zhavoronkova Kseniya N.
Boeva Olga A.
author_facet Sergeev Mihail O.
Revina Alexandra A.
Busev Sergey A.
Zolotarevskiy Victor I.
Zhavoronkova Kseniya N.
Boeva Olga A.
author_sort Sergeev Mihail O.
collection DOAJ
description In this paper, the results of the adsorption and catalytic properties of the mono- and bimetallic palladium and rhodium nanoparticles (0.7–6.5 nm) impregnated on γ-Al2O3 were presented. Metal nanoparticles were obtained in reverse micelles by two reduction methods: radiation-chemical and chemical reduction of ions. Three types of bimetallic nanoparticles Rhcore/Pdshell, Pdcore/Rhshell and substitution alloy Rh-Pd were obtained. The isotope exchange H2+D2⇄2HD and the conversion ortho-H2⇄para-H2 reactions were used as model catalytic processes. It was found that with increasing ω=[H2O]/[surfactant] in addition to increasing the size of the formed particles, also the ratio of particle sizes in a micellar system changes, and in systems with a high value ω, the formation of fine particles is observed. The BMNPs of Rhcore/Pdshell type, showing a synergistic effect in the catalytic properties of reactions involving molecular hydrogen, were obtained [Ks(Rhcore/Pdshell)>4 Ks (Rh or Pd)]. The dependence of the catalytic activity for Rh and Pd NPs on their sizes was obtained. The catalytic activity of the NPs increases with their diameters in the studied range of sizes. The phenomenon of aggregation (sintering) of Rh NPs at a temperature of 800°C was observed. Reflected attempt to compare the optical absorption spectra with the type of nanoparticles.
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spelling doaj.art-b0ebb6f8396c433e9a52ac571a992ccd2022-12-21T18:36:28ZengDe GruyterNanotechnology Reviews2191-90892191-90972014-10-013551552510.1515/ntrev-2014-0011Catalytic properties of monometallic and bimetallic palladium and rhodium nanoparticles obtained in reverse micellar systemsSergeev Mihail O.0Revina Alexandra A.Busev Sergey A.1Zolotarevskiy Victor I.2Zhavoronkova Kseniya N.3Boeva Olga A.4D. Mendeleyev University of Chemical Technology of Russia, 125047, 9 Miusskaya Square, Moscow, RussiaA.N. Frumkin Institute of Physical Chemistry and Electrochemistry RAS, 119991, 31 Leninsky Prospect, Moscow GSP-1, RussiaA.N. Frumkin Institute of Physical Chemistry and Electrochemistry RAS, 119991, 31 Leninsky Prospect, Moscow GSP-1, RussiaD. Mendeleyev University of Chemical Technology of Russia, 125047, 9 Miusskaya Square, Moscow, RussiaD. Mendeleyev University of Chemical Technology of Russia, 125047, 9 Miusskaya Square, Moscow, RussiaIn this paper, the results of the adsorption and catalytic properties of the mono- and bimetallic palladium and rhodium nanoparticles (0.7–6.5 nm) impregnated on γ-Al2O3 were presented. Metal nanoparticles were obtained in reverse micelles by two reduction methods: radiation-chemical and chemical reduction of ions. Three types of bimetallic nanoparticles Rhcore/Pdshell, Pdcore/Rhshell and substitution alloy Rh-Pd were obtained. The isotope exchange H2+D2⇄2HD and the conversion ortho-H2⇄para-H2 reactions were used as model catalytic processes. It was found that with increasing ω=[H2O]/[surfactant] in addition to increasing the size of the formed particles, also the ratio of particle sizes in a micellar system changes, and in systems with a high value ω, the formation of fine particles is observed. The BMNPs of Rhcore/Pdshell type, showing a synergistic effect in the catalytic properties of reactions involving molecular hydrogen, were obtained [Ks(Rhcore/Pdshell)>4 Ks (Rh or Pd)]. The dependence of the catalytic activity for Rh and Pd NPs on their sizes was obtained. The catalytic activity of the NPs increases with their diameters in the studied range of sizes. The phenomenon of aggregation (sintering) of Rh NPs at a temperature of 800°C was observed. Reflected attempt to compare the optical absorption spectra with the type of nanoparticles.https://doi.org/10.1515/ntrev-2014-0011catalysisdeuteriumnanoparticlepalladiumrhodium
spellingShingle Sergeev Mihail O.
Revina Alexandra A.
Busev Sergey A.
Zolotarevskiy Victor I.
Zhavoronkova Kseniya N.
Boeva Olga A.
Catalytic properties of monometallic and bimetallic palladium and rhodium nanoparticles obtained in reverse micellar systems
Nanotechnology Reviews
catalysis
deuterium
nanoparticle
palladium
rhodium
title Catalytic properties of monometallic and bimetallic palladium and rhodium nanoparticles obtained in reverse micellar systems
title_full Catalytic properties of monometallic and bimetallic palladium and rhodium nanoparticles obtained in reverse micellar systems
title_fullStr Catalytic properties of monometallic and bimetallic palladium and rhodium nanoparticles obtained in reverse micellar systems
title_full_unstemmed Catalytic properties of monometallic and bimetallic palladium and rhodium nanoparticles obtained in reverse micellar systems
title_short Catalytic properties of monometallic and bimetallic palladium and rhodium nanoparticles obtained in reverse micellar systems
title_sort catalytic properties of monometallic and bimetallic palladium and rhodium nanoparticles obtained in reverse micellar systems
topic catalysis
deuterium
nanoparticle
palladium
rhodium
url https://doi.org/10.1515/ntrev-2014-0011
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AT busevsergeya catalyticpropertiesofmonometallicandbimetallicpalladiumandrhodiumnanoparticlesobtainedinreversemicellarsystems
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