Activating low-temperature diesel oxidation by single-atom Pt on TiO2 nanowire array

Supported metal single-atom catalysts face challenges on both durability and practicality. Here, the authors demonstrate that a sustained 90% diesel oxidation conversion at ~160 oC is achieved by single-atom Pt on TiO2 nanowire-array integrated catalytic converter.

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Autores principales: Son Hoang, Yanbing Guo, Andrew J. Binder, Wenxiang Tang, Sibo Wang, Jingyue (Jimmy) Liu, Huan Tran, Xingxu Lu, Yu Wang, Yong Ding, Eleni A. Kyriakidou, Ji Yang, Todd J. Toops, Thomas R. Pauly, Rampi Ramprasad, Pu-Xian Gao
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/6febc51dbdee4b268a23779f5f3bf41c
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spelling oai:doaj.org-article:6febc51dbdee4b268a23779f5f3bf41c2021-12-02T16:56:48ZActivating low-temperature diesel oxidation by single-atom Pt on TiO2 nanowire array10.1038/s41467-020-14816-w2041-1723https://doaj.org/article/6febc51dbdee4b268a23779f5f3bf41c2020-02-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-14816-whttps://doaj.org/toc/2041-1723Supported metal single-atom catalysts face challenges on both durability and practicality. Here, the authors demonstrate that a sustained 90% diesel oxidation conversion at ~160 oC is achieved by single-atom Pt on TiO2 nanowire-array integrated catalytic converter.Son HoangYanbing GuoAndrew J. BinderWenxiang TangSibo WangJingyue (Jimmy) LiuHuan TranXingxu LuYu WangYong DingEleni A. KyriakidouJi YangTodd J. ToopsThomas R. PaulyRampi RamprasadPu-Xian GaoNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-10 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Son Hoang
Yanbing Guo
Andrew J. Binder
Wenxiang Tang
Sibo Wang
Jingyue (Jimmy) Liu
Huan Tran
Xingxu Lu
Yu Wang
Yong Ding
Eleni A. Kyriakidou
Ji Yang
Todd J. Toops
Thomas R. Pauly
Rampi Ramprasad
Pu-Xian Gao
Activating low-temperature diesel oxidation by single-atom Pt on TiO2 nanowire array
description Supported metal single-atom catalysts face challenges on both durability and practicality. Here, the authors demonstrate that a sustained 90% diesel oxidation conversion at ~160 oC is achieved by single-atom Pt on TiO2 nanowire-array integrated catalytic converter.
format article
author Son Hoang
Yanbing Guo
Andrew J. Binder
Wenxiang Tang
Sibo Wang
Jingyue (Jimmy) Liu
Huan Tran
Xingxu Lu
Yu Wang
Yong Ding
Eleni A. Kyriakidou
Ji Yang
Todd J. Toops
Thomas R. Pauly
Rampi Ramprasad
Pu-Xian Gao
author_facet Son Hoang
Yanbing Guo
Andrew J. Binder
Wenxiang Tang
Sibo Wang
Jingyue (Jimmy) Liu
Huan Tran
Xingxu Lu
Yu Wang
Yong Ding
Eleni A. Kyriakidou
Ji Yang
Todd J. Toops
Thomas R. Pauly
Rampi Ramprasad
Pu-Xian Gao
author_sort Son Hoang
title Activating low-temperature diesel oxidation by single-atom Pt on TiO2 nanowire array
title_short Activating low-temperature diesel oxidation by single-atom Pt on TiO2 nanowire array
title_full Activating low-temperature diesel oxidation by single-atom Pt on TiO2 nanowire array
title_fullStr Activating low-temperature diesel oxidation by single-atom Pt on TiO2 nanowire array
title_full_unstemmed Activating low-temperature diesel oxidation by single-atom Pt on TiO2 nanowire array
title_sort activating low-temperature diesel oxidation by single-atom pt on tio2 nanowire array
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/6febc51dbdee4b268a23779f5f3bf41c
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