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Kinetic investigation of para-nitrophenol reduction with photodeposited platinum nanoparticles onto tunicate cellulose

Photodeposition is a specific method for depositing metallic co-catalysts onto photocatalysts and was applied for immobilizing platinum nanoparticles onto cellulose, a photocatalytically inactive biopolymer. The obtained Pt@cellulose catalysts show narrow and well-dispersed nanoparticles with averag...

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Autores principales: Thiel, T. A., Zhang, X., Radhakrishnan, B., van de Krol, R., Abdi, F. F., Schroeter, M., Schomäcker, R., Schwarze, M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9614613/
https://www.ncbi.nlm.nih.gov/pubmed/36349035
http://dx.doi.org/10.1039/d2ra05507d
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author Thiel, T. A.
Zhang, X.
Radhakrishnan, B.
van de Krol, R.
Abdi, F. F.
Schroeter, M.
Schomäcker, R.
Schwarze, M.
author_facet Thiel, T. A.
Zhang, X.
Radhakrishnan, B.
van de Krol, R.
Abdi, F. F.
Schroeter, M.
Schomäcker, R.
Schwarze, M.
author_sort Thiel, T. A.
collection PubMed
description Photodeposition is a specific method for depositing metallic co-catalysts onto photocatalysts and was applied for immobilizing platinum nanoparticles onto cellulose, a photocatalytically inactive biopolymer. The obtained Pt@cellulose catalysts show narrow and well-dispersed nanoparticles with average sizes between 2 and 5 nm, whereby loading, size and distribution depend on the preparation conditions. The catalysts were investigated for the hydrogenation of para-nitrophenol via transfer hydrogenation using sodium borohydride as the hydrogen source, and the reaction rate constant was determined using the pseudo-first-order reaction rate law. The Pt@cellulose catalysts are catalytically active with rate constant values k from 0.09 × 10(−3) to 0.43 × 10(−3) min(−1), which were higher than the rate constant of a commercial Pt@Al(2)O(3) catalyst (k = 0.09 × 10(−3) min(−1)). Additionally, the Pt@cellulose catalyst can be used for electrochemical hydrogenation of para-nitrophenol where the hydrogen is electrocatalytically formed. The electrochemical hydrogenation is faster compared to the transfer hydrogenation (k = 0.11 min(−1)).
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spelling pubmed-96146132022-11-07 Kinetic investigation of para-nitrophenol reduction with photodeposited platinum nanoparticles onto tunicate cellulose Thiel, T. A. Zhang, X. Radhakrishnan, B. van de Krol, R. Abdi, F. F. Schroeter, M. Schomäcker, R. Schwarze, M. RSC Adv Chemistry Photodeposition is a specific method for depositing metallic co-catalysts onto photocatalysts and was applied for immobilizing platinum nanoparticles onto cellulose, a photocatalytically inactive biopolymer. The obtained Pt@cellulose catalysts show narrow and well-dispersed nanoparticles with average sizes between 2 and 5 nm, whereby loading, size and distribution depend on the preparation conditions. The catalysts were investigated for the hydrogenation of para-nitrophenol via transfer hydrogenation using sodium borohydride as the hydrogen source, and the reaction rate constant was determined using the pseudo-first-order reaction rate law. The Pt@cellulose catalysts are catalytically active with rate constant values k from 0.09 × 10(−3) to 0.43 × 10(−3) min(−1), which were higher than the rate constant of a commercial Pt@Al(2)O(3) catalyst (k = 0.09 × 10(−3) min(−1)). Additionally, the Pt@cellulose catalyst can be used for electrochemical hydrogenation of para-nitrophenol where the hydrogen is electrocatalytically formed. The electrochemical hydrogenation is faster compared to the transfer hydrogenation (k = 0.11 min(−1)). The Royal Society of Chemistry 2022-10-28 /pmc/articles/PMC9614613/ /pubmed/36349035 http://dx.doi.org/10.1039/d2ra05507d Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Thiel, T. A.
Zhang, X.
Radhakrishnan, B.
van de Krol, R.
Abdi, F. F.
Schroeter, M.
Schomäcker, R.
Schwarze, M.
Kinetic investigation of para-nitrophenol reduction with photodeposited platinum nanoparticles onto tunicate cellulose
title Kinetic investigation of para-nitrophenol reduction with photodeposited platinum nanoparticles onto tunicate cellulose
title_full Kinetic investigation of para-nitrophenol reduction with photodeposited platinum nanoparticles onto tunicate cellulose
title_fullStr Kinetic investigation of para-nitrophenol reduction with photodeposited platinum nanoparticles onto tunicate cellulose
title_full_unstemmed Kinetic investigation of para-nitrophenol reduction with photodeposited platinum nanoparticles onto tunicate cellulose
title_short Kinetic investigation of para-nitrophenol reduction with photodeposited platinum nanoparticles onto tunicate cellulose
title_sort kinetic investigation of para-nitrophenol reduction with photodeposited platinum nanoparticles onto tunicate cellulose
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9614613/
https://www.ncbi.nlm.nih.gov/pubmed/36349035
http://dx.doi.org/10.1039/d2ra05507d
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