M(II)Al<sub>4</sub> Type Layered Double Hydroxides—Preparation Using Mechanochemical Route, Structural Characterization and Catalytic Application

The synthesis of the copper-poor and aluminum-rich layered double hydroxides (LDHs) of the CuAl<sub>4</sub> type was optimized in detail in this work, by applying an intense mechanochemical treatment to activate the gibbsite starting reagent. The phase-pure forms of these LDHs were prepa...

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Main Authors: Márton Szabados, Adél Anna Ádám, Zsolt Kása, Kornélia Baán, Róbert Mucsi, András Sápi, Zoltán Kónya, Ákos Kukovecz, Pál Sipos
Format: Article
Language:English
Published: MDPI AG 2021-08-01
Series:Materials
Subjects:
Online Access:https://www.mdpi.com/1996-1944/14/17/4880
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spelling doaj-bae1dcb11cef40e8a12230474ea2f3062021-09-09T13:50:56ZengMDPI AGMaterials1996-19442021-08-01144880488010.3390/ma14174880M(II)Al<sub>4</sub> Type Layered Double Hydroxides—Preparation Using Mechanochemical Route, Structural Characterization and Catalytic ApplicationMárton Szabados0Adél Anna Ádám1Zsolt Kása2Kornélia Baán3Róbert Mucsi4András Sápi5Zoltán Kónya6Ákos Kukovecz7Pál Sipos8Department of Organic Chemistry, University of Szeged, Dóm tér 8, H-6720 Szeged, HungaryMaterial and Solution Structure Research Group, Institute of Chemistry, University of Szeged, Aradi Vértanúk tere 1, H-6720 Szeged, HungaryMaterial and Solution Structure Research Group, Institute of Chemistry, University of Szeged, Aradi Vértanúk tere 1, H-6720 Szeged, HungaryDepartment of Applied and Environmental Chemistry, University of Szeged, Rerrich B. tér 1, H-6720 Szeged, HungaryDepartment of Applied and Environmental Chemistry, University of Szeged, Rerrich B. tér 1, H-6720 Szeged, HungaryDepartment of Applied and Environmental Chemistry, University of Szeged, Rerrich B. tér 1, H-6720 Szeged, HungaryDepartment of Applied and Environmental Chemistry, University of Szeged, Rerrich B. tér 1, H-6720 Szeged, HungaryDepartment of Applied and Environmental Chemistry, University of Szeged, Rerrich B. tér 1, H-6720 Szeged, HungaryMaterial and Solution Structure Research Group, Institute of Chemistry, University of Szeged, Aradi Vértanúk tere 1, H-6720 Szeged, HungaryThe synthesis of the copper-poor and aluminum-rich layered double hydroxides (LDHs) of the CuAl<sub>4</sub> type was optimized in detail in this work, by applying an intense mechanochemical treatment to activate the gibbsite starting reagent. The phase-pure forms of these LDHs were prepared for the first time; using copper nitrate and perchlorate salts during the syntheses turned out to be the key to avoiding the formation of copper hydroxide sideproducts. Based on the use of the optimized syntheses parameters, the preparation of layered triple and multiple hydroxides was also attempted using Ni(II), Co(II), Zn(II) and even Mg(II) ions. These studies let us identify the relative positions of the incorporating cations in the well-known selectivity series as Ni<sup>2+</sup> >> Cu<sup>2+</sup> >> Zn<sup>2+</sup> > Co<sup>2+</sup> >> Mg<sup>2+</sup>. The solids formed were characterized by using powder X-ray diffractometry, UV–Vis diffuse reflectance spectroscopy, Fourier-transform infrared spectroscopy, thermogravimetric analysis and scanning electron microscopy. The catalytic potential of the samples was investigated in carbon monoxide oxidation reactions at atmospheric pressure, supported by an in situ diffuse reflectance infrared spectroscopy probe. All solids proved to be active and the combination of the nickel and cobalt incorporation (which resulted in a NiCoAl<sub>8</sub> layered triple hydroxide) brought outstanding benefits regarding low-temperature oxidation and increased carbon monoxide conversion values.https://www.mdpi.com/1996-1944/14/17/4880gibbsite intercalationcopper- and magnesium-poor layered double hydroxidesmechanochemistrycatalytic carbon monoxide oxidation
collection DOAJ
language English
format Article
sources DOAJ
author Márton Szabados
Adél Anna Ádám
Zsolt Kása
Kornélia Baán
Róbert Mucsi
András Sápi
Zoltán Kónya
Ákos Kukovecz
Pál Sipos
spellingShingle Márton Szabados
Adél Anna Ádám
Zsolt Kása
Kornélia Baán
Róbert Mucsi
András Sápi
Zoltán Kónya
Ákos Kukovecz
Pál Sipos
M(II)Al<sub>4</sub> Type Layered Double Hydroxides—Preparation Using Mechanochemical Route, Structural Characterization and Catalytic Application
Materials
gibbsite intercalation
copper- and magnesium-poor layered double hydroxides
mechanochemistry
catalytic carbon monoxide oxidation
author_facet Márton Szabados
Adél Anna Ádám
Zsolt Kása
Kornélia Baán
Róbert Mucsi
András Sápi
Zoltán Kónya
Ákos Kukovecz
Pál Sipos
author_sort Márton Szabados
title M(II)Al<sub>4</sub> Type Layered Double Hydroxides—Preparation Using Mechanochemical Route, Structural Characterization and Catalytic Application
title_short M(II)Al<sub>4</sub> Type Layered Double Hydroxides—Preparation Using Mechanochemical Route, Structural Characterization and Catalytic Application
title_full M(II)Al<sub>4</sub> Type Layered Double Hydroxides—Preparation Using Mechanochemical Route, Structural Characterization and Catalytic Application
title_fullStr M(II)Al<sub>4</sub> Type Layered Double Hydroxides—Preparation Using Mechanochemical Route, Structural Characterization and Catalytic Application
title_full_unstemmed M(II)Al<sub>4</sub> Type Layered Double Hydroxides—Preparation Using Mechanochemical Route, Structural Characterization and Catalytic Application
title_sort m(ii)al<sub>4</sub> type layered double hydroxides—preparation using mechanochemical route, structural characterization and catalytic application
publisher MDPI AG
series Materials
issn 1996-1944
publishDate 2021-08-01
description The synthesis of the copper-poor and aluminum-rich layered double hydroxides (LDHs) of the CuAl<sub>4</sub> type was optimized in detail in this work, by applying an intense mechanochemical treatment to activate the gibbsite starting reagent. The phase-pure forms of these LDHs were prepared for the first time; using copper nitrate and perchlorate salts during the syntheses turned out to be the key to avoiding the formation of copper hydroxide sideproducts. Based on the use of the optimized syntheses parameters, the preparation of layered triple and multiple hydroxides was also attempted using Ni(II), Co(II), Zn(II) and even Mg(II) ions. These studies let us identify the relative positions of the incorporating cations in the well-known selectivity series as Ni<sup>2+</sup> >> Cu<sup>2+</sup> >> Zn<sup>2+</sup> > Co<sup>2+</sup> >> Mg<sup>2+</sup>. The solids formed were characterized by using powder X-ray diffractometry, UV–Vis diffuse reflectance spectroscopy, Fourier-transform infrared spectroscopy, thermogravimetric analysis and scanning electron microscopy. The catalytic potential of the samples was investigated in carbon monoxide oxidation reactions at atmospheric pressure, supported by an in situ diffuse reflectance infrared spectroscopy probe. All solids proved to be active and the combination of the nickel and cobalt incorporation (which resulted in a NiCoAl<sub>8</sub> layered triple hydroxide) brought outstanding benefits regarding low-temperature oxidation and increased carbon monoxide conversion values.
topic gibbsite intercalation
copper- and magnesium-poor layered double hydroxides
mechanochemistry
catalytic carbon monoxide oxidation
url https://www.mdpi.com/1996-1944/14/17/4880
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