Methanol-Water Interaction in Photocatalytic Methanol Reforming ─ An Operando NMR Study

In this work, an operando NMR method was used to investigate the interaction between water and methanol in photocatalytic methanol reforming process in a real solid-liquid environment. The existence of hydrogen bonding and proton exchange between water and methanol were proven. The experimental resu...

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Main Authors: WANG Rui-di, XU Bei-bei, SONG Yan-hong, WANG Xue-lu, YAO Ye-feng
Format: Article
Language:zho
Published: Science Press 2021-03-01
Series:Chinese Journal of Magnetic Resonance
Subjects:
Online Access:http://121.43.60.238/bpxzz/EN/10.11938/cjmr20202818
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spelling doaj-9e9a4ffacfd34894b282d53640eaade72021-03-03T08:37:59ZzhoScience PressChinese Journal of Magnetic Resonance1000-45561000-45562021-03-013801435710.11938/cjmr20202818Methanol-Water Interaction in Photocatalytic Methanol Reforming ─ An Operando NMR StudyWANG Rui-di0XU Bei-bei1SONG Yan-hong2WANG Xue-lu3YAO Ye-feng4Shanghai Key Laboratory of Magnetic Resonance, College of Physics and Materials Science, East China Normal University, Shanghai 200062, ChinaShanghai Key Laboratory of Magnetic Resonance, College of Physics and Materials Science, East China Normal University, Shanghai 200062, ChinaShanghai Key Laboratory of Magnetic Resonance, College of Physics and Materials Science, East China Normal University, Shanghai 200062, ChinaShanghai Key Laboratory of Magnetic Resonance, College of Physics and Materials Science, East China Normal University, Shanghai 200062, ChinaShanghai Key Laboratory of Magnetic Resonance, College of Physics and Materials Science, East China Normal University, Shanghai 200062, ChinaIn this work, an operando NMR method was used to investigate the interaction between water and methanol in photocatalytic methanol reforming process in a real solid-liquid environment. The existence of hydrogen bonding and proton exchange between water and methanol were proven. The experimental results demonstrated that, the interaction between methanol and water is affected by the type of catalyst, reaction temperature and light irradiation, which consequently influences the methanol reforming efficiency. It was also shown that selection of the appropriate temperature and catalyst could improve methanol reforming efficiency.http://121.43.60.238/bpxzz/EN/10.11938/cjmr20202818operando nuclear magnetic resonance (nmr)methanol reformingphotocatalysisliquid-state nuclear magnetic resonance
collection DOAJ
language zho
format Article
sources DOAJ
author WANG Rui-di
XU Bei-bei
SONG Yan-hong
WANG Xue-lu
YAO Ye-feng
spellingShingle WANG Rui-di
XU Bei-bei
SONG Yan-hong
WANG Xue-lu
YAO Ye-feng
Methanol-Water Interaction in Photocatalytic Methanol Reforming ─ An Operando NMR Study
Chinese Journal of Magnetic Resonance
operando nuclear magnetic resonance (nmr)
methanol reforming
photocatalysis
liquid-state nuclear magnetic resonance
author_facet WANG Rui-di
XU Bei-bei
SONG Yan-hong
WANG Xue-lu
YAO Ye-feng
author_sort WANG Rui-di
title Methanol-Water Interaction in Photocatalytic Methanol Reforming ─ An Operando NMR Study
title_short Methanol-Water Interaction in Photocatalytic Methanol Reforming ─ An Operando NMR Study
title_full Methanol-Water Interaction in Photocatalytic Methanol Reforming ─ An Operando NMR Study
title_fullStr Methanol-Water Interaction in Photocatalytic Methanol Reforming ─ An Operando NMR Study
title_full_unstemmed Methanol-Water Interaction in Photocatalytic Methanol Reforming ─ An Operando NMR Study
title_sort methanol-water interaction in photocatalytic methanol reforming ─ an operando nmr study
publisher Science Press
series Chinese Journal of Magnetic Resonance
issn 1000-4556
1000-4556
publishDate 2021-03-01
description In this work, an operando NMR method was used to investigate the interaction between water and methanol in photocatalytic methanol reforming process in a real solid-liquid environment. The existence of hydrogen bonding and proton exchange between water and methanol were proven. The experimental results demonstrated that, the interaction between methanol and water is affected by the type of catalyst, reaction temperature and light irradiation, which consequently influences the methanol reforming efficiency. It was also shown that selection of the appropriate temperature and catalyst could improve methanol reforming efficiency.
topic operando nuclear magnetic resonance (nmr)
methanol reforming
photocatalysis
liquid-state nuclear magnetic resonance
url http://121.43.60.238/bpxzz/EN/10.11938/cjmr20202818
work_keys_str_mv AT wangruidi methanolwaterinteractioninphotocatalyticmethanolreforminganoperandonmrstudy
AT xubeibei methanolwaterinteractioninphotocatalyticmethanolreforminganoperandonmrstudy
AT songyanhong methanolwaterinteractioninphotocatalyticmethanolreforminganoperandonmrstudy
AT wangxuelu methanolwaterinteractioninphotocatalyticmethanolreforminganoperandonmrstudy
AT yaoyefeng methanolwaterinteractioninphotocatalyticmethanolreforminganoperandonmrstudy
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