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Monometallic Cerium Layered Double Hydroxide Supported Pd-Ni Nanoparticles as High Performance Catalysts for Lignin Hydrogenolysis

Monometallic cerium layered double hydroxides (Ce-LDH) supports were successfully synthesized by a homogeneous alkalization route driven by hexamethylenetetramine (HMT). The formation of the Ce-LDH was confirmed and its structural and compositional properties studied by XRD, SEM, XPS, iodometric ana...

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Autores principales: De Saegher, Tibo, Lauwaert, Jeroen, Hanssen, Jorku, Bruneel, Els, Van Zele, Matthias, Van Geem, Kevin, De Buysser, Klaartje, Verberckmoes, An
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7040693/
https://www.ncbi.nlm.nih.gov/pubmed/32033090
http://dx.doi.org/10.3390/ma13030691
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author De Saegher, Tibo
Lauwaert, Jeroen
Hanssen, Jorku
Bruneel, Els
Van Zele, Matthias
Van Geem, Kevin
De Buysser, Klaartje
Verberckmoes, An
author_facet De Saegher, Tibo
Lauwaert, Jeroen
Hanssen, Jorku
Bruneel, Els
Van Zele, Matthias
Van Geem, Kevin
De Buysser, Klaartje
Verberckmoes, An
author_sort De Saegher, Tibo
collection PubMed
description Monometallic cerium layered double hydroxides (Ce-LDH) supports were successfully synthesized by a homogeneous alkalization route driven by hexamethylenetetramine (HMT). The formation of the Ce-LDH was confirmed and its structural and compositional properties studied by XRD, SEM, XPS, iodometric analyses and TGA. HT-XRD, N(2)-sorption and XRF analyses revealed that by increasing the calcination temperature from 200 to 800 °C, the Ce-LDH material transforms to ceria (CeO(2)) in four distinct phases, i.e., the loss of intramolecular water, dehydroxylation, removal of nitrate groups and removal of sulfate groups. When loaded with 2.5 wt% palladium (Pd) and 2.5 wt% nickel (Ni) and calcined at 500 °C, the PdNi-Ce-LDH-derived catalysts strongly outperform the PdNi-CeO(2) benchmark catalyst in terms of conversion as well as selectivity for the hydrogenolysis of benzyl phenyl ether (BPE), a model compound for the α-O-4 ether linkage in lignin. The PdNi-Ce-LDH catalysts showed full selectivity towards phenol and toluene while the PdNi-CeO(2) catalysts showed additional oxidation of toluene to benzoic acid. The highest BPE conversion was observed with the PdNi-Ce-LDH catalyst calcined at 600 °C, which could be related to an optimum in morphological and compositional characteristics of the support.
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spelling pubmed-70406932020-03-09 Monometallic Cerium Layered Double Hydroxide Supported Pd-Ni Nanoparticles as High Performance Catalysts for Lignin Hydrogenolysis De Saegher, Tibo Lauwaert, Jeroen Hanssen, Jorku Bruneel, Els Van Zele, Matthias Van Geem, Kevin De Buysser, Klaartje Verberckmoes, An Materials (Basel) Article Monometallic cerium layered double hydroxides (Ce-LDH) supports were successfully synthesized by a homogeneous alkalization route driven by hexamethylenetetramine (HMT). The formation of the Ce-LDH was confirmed and its structural and compositional properties studied by XRD, SEM, XPS, iodometric analyses and TGA. HT-XRD, N(2)-sorption and XRF analyses revealed that by increasing the calcination temperature from 200 to 800 °C, the Ce-LDH material transforms to ceria (CeO(2)) in four distinct phases, i.e., the loss of intramolecular water, dehydroxylation, removal of nitrate groups and removal of sulfate groups. When loaded with 2.5 wt% palladium (Pd) and 2.5 wt% nickel (Ni) and calcined at 500 °C, the PdNi-Ce-LDH-derived catalysts strongly outperform the PdNi-CeO(2) benchmark catalyst in terms of conversion as well as selectivity for the hydrogenolysis of benzyl phenyl ether (BPE), a model compound for the α-O-4 ether linkage in lignin. The PdNi-Ce-LDH catalysts showed full selectivity towards phenol and toluene while the PdNi-CeO(2) catalysts showed additional oxidation of toluene to benzoic acid. The highest BPE conversion was observed with the PdNi-Ce-LDH catalyst calcined at 600 °C, which could be related to an optimum in morphological and compositional characteristics of the support. MDPI 2020-02-04 /pmc/articles/PMC7040693/ /pubmed/32033090 http://dx.doi.org/10.3390/ma13030691 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
De Saegher, Tibo
Lauwaert, Jeroen
Hanssen, Jorku
Bruneel, Els
Van Zele, Matthias
Van Geem, Kevin
De Buysser, Klaartje
Verberckmoes, An
Monometallic Cerium Layered Double Hydroxide Supported Pd-Ni Nanoparticles as High Performance Catalysts for Lignin Hydrogenolysis
title Monometallic Cerium Layered Double Hydroxide Supported Pd-Ni Nanoparticles as High Performance Catalysts for Lignin Hydrogenolysis
title_full Monometallic Cerium Layered Double Hydroxide Supported Pd-Ni Nanoparticles as High Performance Catalysts for Lignin Hydrogenolysis
title_fullStr Monometallic Cerium Layered Double Hydroxide Supported Pd-Ni Nanoparticles as High Performance Catalysts for Lignin Hydrogenolysis
title_full_unstemmed Monometallic Cerium Layered Double Hydroxide Supported Pd-Ni Nanoparticles as High Performance Catalysts for Lignin Hydrogenolysis
title_short Monometallic Cerium Layered Double Hydroxide Supported Pd-Ni Nanoparticles as High Performance Catalysts for Lignin Hydrogenolysis
title_sort monometallic cerium layered double hydroxide supported pd-ni nanoparticles as high performance catalysts for lignin hydrogenolysis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7040693/
https://www.ncbi.nlm.nih.gov/pubmed/32033090
http://dx.doi.org/10.3390/ma13030691
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