Cargando…

Highly Efficient Catalytic Performances of Nitro Compounds and Morin via Self-Assembled MXene-Pd Nanocomposites Synthesized through Self-Reduction Strategy

With development of the society, the problem of environmental pollution is becoming more and more serious. There is the urgent need to develop a new type of sustainable green material for degradable pollutants. However, the conventional preparation method is limited by conditions such as cumbersome...

Descripción completa

Detalles Bibliográficos
Autores principales: Yin, Juanjuan, Zhang, Lun, Jiao, Tifeng, Zou, Guodong, Bai, Zhenhua, Chen, Yan, Zhang, Qingrui, Xia, Meirong, Peng, Qiuming
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6669661/
https://www.ncbi.nlm.nih.gov/pubmed/31336924
http://dx.doi.org/10.3390/nano9071009
_version_ 1783440423481507840
author Yin, Juanjuan
Zhang, Lun
Jiao, Tifeng
Zou, Guodong
Bai, Zhenhua
Chen, Yan
Zhang, Qingrui
Xia, Meirong
Peng, Qiuming
author_facet Yin, Juanjuan
Zhang, Lun
Jiao, Tifeng
Zou, Guodong
Bai, Zhenhua
Chen, Yan
Zhang, Qingrui
Xia, Meirong
Peng, Qiuming
author_sort Yin, Juanjuan
collection PubMed
description With development of the society, the problem of environmental pollution is becoming more and more serious. There is the urgent need to develop a new type of sustainable green material for degradable pollutants. However, the conventional preparation method is limited by conditions such as cumbersome operation, high energy consumption, and high pollution. Here, a simple method named self-reduction has been proposed, to synthesize highly efficient catalytic nitro compounds and morin self-assembled MXene-Pd nanocomposites. Palladium nanoparticles were grown in situ on MXene nanosheets to form MXene@PdNPs. MXene@PdNPs composites with different reaction times were prepared by adjusting the reduction reaction time. In particular, MXene@PdNPs20 exhibited a high catalytic effect on 4-NP and 2-NA, and the first-order rate constants of the catalysis were 0.180 s(−1) and 0.089 s(−1), respectively. It should be noted that after eight consecutive catalytic cycles, the conversion to catalyze 4-NP was still greater than 94%, and the conversion to catalyze 2-NA was still greater than 91.8%. Therefore, the research of self-assembled MXene@PdNPs nanocomposites has important potential value for environmental management and sustainable development of human health, and provides new clues for the future research of MXene-based new catalyst materials.
format Online
Article
Text
id pubmed-6669661
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-66696612019-08-08 Highly Efficient Catalytic Performances of Nitro Compounds and Morin via Self-Assembled MXene-Pd Nanocomposites Synthesized through Self-Reduction Strategy Yin, Juanjuan Zhang, Lun Jiao, Tifeng Zou, Guodong Bai, Zhenhua Chen, Yan Zhang, Qingrui Xia, Meirong Peng, Qiuming Nanomaterials (Basel) Article With development of the society, the problem of environmental pollution is becoming more and more serious. There is the urgent need to develop a new type of sustainable green material for degradable pollutants. However, the conventional preparation method is limited by conditions such as cumbersome operation, high energy consumption, and high pollution. Here, a simple method named self-reduction has been proposed, to synthesize highly efficient catalytic nitro compounds and morin self-assembled MXene-Pd nanocomposites. Palladium nanoparticles were grown in situ on MXene nanosheets to form MXene@PdNPs. MXene@PdNPs composites with different reaction times were prepared by adjusting the reduction reaction time. In particular, MXene@PdNPs20 exhibited a high catalytic effect on 4-NP and 2-NA, and the first-order rate constants of the catalysis were 0.180 s(−1) and 0.089 s(−1), respectively. It should be noted that after eight consecutive catalytic cycles, the conversion to catalyze 4-NP was still greater than 94%, and the conversion to catalyze 2-NA was still greater than 91.8%. Therefore, the research of self-assembled MXene@PdNPs nanocomposites has important potential value for environmental management and sustainable development of human health, and provides new clues for the future research of MXene-based new catalyst materials. MDPI 2019-07-12 /pmc/articles/PMC6669661/ /pubmed/31336924 http://dx.doi.org/10.3390/nano9071009 Text en © 2019 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
Yin, Juanjuan
Zhang, Lun
Jiao, Tifeng
Zou, Guodong
Bai, Zhenhua
Chen, Yan
Zhang, Qingrui
Xia, Meirong
Peng, Qiuming
Highly Efficient Catalytic Performances of Nitro Compounds and Morin via Self-Assembled MXene-Pd Nanocomposites Synthesized through Self-Reduction Strategy
title Highly Efficient Catalytic Performances of Nitro Compounds and Morin via Self-Assembled MXene-Pd Nanocomposites Synthesized through Self-Reduction Strategy
title_full Highly Efficient Catalytic Performances of Nitro Compounds and Morin via Self-Assembled MXene-Pd Nanocomposites Synthesized through Self-Reduction Strategy
title_fullStr Highly Efficient Catalytic Performances of Nitro Compounds and Morin via Self-Assembled MXene-Pd Nanocomposites Synthesized through Self-Reduction Strategy
title_full_unstemmed Highly Efficient Catalytic Performances of Nitro Compounds and Morin via Self-Assembled MXene-Pd Nanocomposites Synthesized through Self-Reduction Strategy
title_short Highly Efficient Catalytic Performances of Nitro Compounds and Morin via Self-Assembled MXene-Pd Nanocomposites Synthesized through Self-Reduction Strategy
title_sort highly efficient catalytic performances of nitro compounds and morin via self-assembled mxene-pd nanocomposites synthesized through self-reduction strategy
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6669661/
https://www.ncbi.nlm.nih.gov/pubmed/31336924
http://dx.doi.org/10.3390/nano9071009
work_keys_str_mv AT yinjuanjuan highlyefficientcatalyticperformancesofnitrocompoundsandmorinviaselfassembledmxenepdnanocompositessynthesizedthroughselfreductionstrategy
AT zhanglun highlyefficientcatalyticperformancesofnitrocompoundsandmorinviaselfassembledmxenepdnanocompositessynthesizedthroughselfreductionstrategy
AT jiaotifeng highlyefficientcatalyticperformancesofnitrocompoundsandmorinviaselfassembledmxenepdnanocompositessynthesizedthroughselfreductionstrategy
AT zouguodong highlyefficientcatalyticperformancesofnitrocompoundsandmorinviaselfassembledmxenepdnanocompositessynthesizedthroughselfreductionstrategy
AT baizhenhua highlyefficientcatalyticperformancesofnitrocompoundsandmorinviaselfassembledmxenepdnanocompositessynthesizedthroughselfreductionstrategy
AT chenyan highlyefficientcatalyticperformancesofnitrocompoundsandmorinviaselfassembledmxenepdnanocompositessynthesizedthroughselfreductionstrategy
AT zhangqingrui highlyefficientcatalyticperformancesofnitrocompoundsandmorinviaselfassembledmxenepdnanocompositessynthesizedthroughselfreductionstrategy
AT xiameirong highlyefficientcatalyticperformancesofnitrocompoundsandmorinviaselfassembledmxenepdnanocompositessynthesizedthroughselfreductionstrategy
AT pengqiuming highlyefficientcatalyticperformancesofnitrocompoundsandmorinviaselfassembledmxenepdnanocompositessynthesizedthroughselfreductionstrategy