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Fabrication of Yolk-Shell Cu@C Nanocomposites as High-Performance Catalysts in Oxidative Carbonylation of Methanol to Dimethyl Carbonate

A facile way was developed to fabricate yolk-shell composites with tunable Cu cores encapsulated within hollow carbon spheres (Cu@C) with an average diameter about 210 nm and cavity size about 80 nm. During pyrolysis, the confined nanospace of hollow cavity ensures that the nucleation-and-growth pro...

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Autores principales: Wang, Juan, Hao, Panpan, Shi, Ruina, Yang, Leilei, Liu, Shusen, Zhao, Jinxian, Ren, Jun, Li, Zhong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer US 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5548704/
https://www.ncbi.nlm.nih.gov/pubmed/28791652
http://dx.doi.org/10.1186/s11671-017-2258-7
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author Wang, Juan
Hao, Panpan
Shi, Ruina
Yang, Leilei
Liu, Shusen
Zhao, Jinxian
Ren, Jun
Li, Zhong
author_facet Wang, Juan
Hao, Panpan
Shi, Ruina
Yang, Leilei
Liu, Shusen
Zhao, Jinxian
Ren, Jun
Li, Zhong
author_sort Wang, Juan
collection PubMed
description A facile way was developed to fabricate yolk-shell composites with tunable Cu cores encapsulated within hollow carbon spheres (Cu@C) with an average diameter about 210 nm and cavity size about 80 nm. During pyrolysis, the confined nanospace of hollow cavity ensures that the nucleation-and-growth process of Cu nanocrystals take place exclusively inside the cavities. The size of Cu cores can be easily tuned from 30 to 55 nm by varying the copper salt concentration. By deliberately creating shell porosity through KOH chemical activation, at an optimized KOH/HCS mass ratio of 1/4, the catalytic performance for the oxidative carbonylation of methanol to dimethyl carbonate (DMC) of the activated sample is enhanced remarkably with TOF up to 8.6 h(−1) at methanol conversion of 17.1%. The activated yolk-shell catalyst shows promising catalytic properties involving the reusability with slight loss of catalytic activity and negligible leaching of activated components even after seven recycles, which is beneficial to the implementation of clean production for the eco-friendly chemical DMC thoroughly. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (doi:10.1186/s11671-017-2258-7) contains supplementary material, which is available to authorized users.
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spelling pubmed-55487042017-08-24 Fabrication of Yolk-Shell Cu@C Nanocomposites as High-Performance Catalysts in Oxidative Carbonylation of Methanol to Dimethyl Carbonate Wang, Juan Hao, Panpan Shi, Ruina Yang, Leilei Liu, Shusen Zhao, Jinxian Ren, Jun Li, Zhong Nanoscale Res Lett Nano Express A facile way was developed to fabricate yolk-shell composites with tunable Cu cores encapsulated within hollow carbon spheres (Cu@C) with an average diameter about 210 nm and cavity size about 80 nm. During pyrolysis, the confined nanospace of hollow cavity ensures that the nucleation-and-growth process of Cu nanocrystals take place exclusively inside the cavities. The size of Cu cores can be easily tuned from 30 to 55 nm by varying the copper salt concentration. By deliberately creating shell porosity through KOH chemical activation, at an optimized KOH/HCS mass ratio of 1/4, the catalytic performance for the oxidative carbonylation of methanol to dimethyl carbonate (DMC) of the activated sample is enhanced remarkably with TOF up to 8.6 h(−1) at methanol conversion of 17.1%. The activated yolk-shell catalyst shows promising catalytic properties involving the reusability with slight loss of catalytic activity and negligible leaching of activated components even after seven recycles, which is beneficial to the implementation of clean production for the eco-friendly chemical DMC thoroughly. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (doi:10.1186/s11671-017-2258-7) contains supplementary material, which is available to authorized users. Springer US 2017-08-08 /pmc/articles/PMC5548704/ /pubmed/28791652 http://dx.doi.org/10.1186/s11671-017-2258-7 Text en © The Author(s). 2017 Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made.
spellingShingle Nano Express
Wang, Juan
Hao, Panpan
Shi, Ruina
Yang, Leilei
Liu, Shusen
Zhao, Jinxian
Ren, Jun
Li, Zhong
Fabrication of Yolk-Shell Cu@C Nanocomposites as High-Performance Catalysts in Oxidative Carbonylation of Methanol to Dimethyl Carbonate
title Fabrication of Yolk-Shell Cu@C Nanocomposites as High-Performance Catalysts in Oxidative Carbonylation of Methanol to Dimethyl Carbonate
title_full Fabrication of Yolk-Shell Cu@C Nanocomposites as High-Performance Catalysts in Oxidative Carbonylation of Methanol to Dimethyl Carbonate
title_fullStr Fabrication of Yolk-Shell Cu@C Nanocomposites as High-Performance Catalysts in Oxidative Carbonylation of Methanol to Dimethyl Carbonate
title_full_unstemmed Fabrication of Yolk-Shell Cu@C Nanocomposites as High-Performance Catalysts in Oxidative Carbonylation of Methanol to Dimethyl Carbonate
title_short Fabrication of Yolk-Shell Cu@C Nanocomposites as High-Performance Catalysts in Oxidative Carbonylation of Methanol to Dimethyl Carbonate
title_sort fabrication of yolk-shell cu@c nanocomposites as high-performance catalysts in oxidative carbonylation of methanol to dimethyl carbonate
topic Nano Express
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5548704/
https://www.ncbi.nlm.nih.gov/pubmed/28791652
http://dx.doi.org/10.1186/s11671-017-2258-7
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