Synchronizing Deoxygenation and Hydrogenation to Effect Glycerol Hydrogenolysis over Pt/Nb2W15O50 at Low H2 Pressure

The selective hydrogenolysis of glycerol to 1,3-propanediol (1,3-PDO) necessitates the precise tandem reactions of deoxygenation at a specific location and the ensuing hydrogenation steps. Herein, a solid solution-supported catalyst Pt/Nb2W15O50 was reported for the hydrogenolysis of glycerol to 1,3-PDO. We engineered the exceptional interaction between active Pt and oxygen vacancies to efficiently integrate the deoxygenation and hydrogenation steps in tandem. The strong interaction between active Pt and oxygen vacancies was established via hydrogen (H2) spillover and induced the generation of 1,3-PDO in situ. This synergistic effect confers Pt/Nb2W15O50 with high catalytic performance, combining a 75.6% conversion of glycerol and 66.5% selectivity to 1,3-PDO at a low H2 pressure of 1.0 MPa (noting that most catalysts require H2 pressures of ≥4 MPa). Moreover, the structure-performance relationship validated that there is a linear correlation between active Pt, oxygen vacancies, and 1,3-PDO yield. This study provides mechanistic insights into further catalyst developments for the valorization of other biomass-derived oxygenates.

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Main Authors: Chen, Jinghu, Huang, Hong, Pan, Hu, Cao, Yongyong, Jiang, Lingchang, Xia, Qineng, Meng, Xiangtong, Qiu, Jieshan, Zuilhof, Han, Liu, Shaomin
Format: Article/Letter to editor biblioteca
Language:English
Subjects:H spillover, Pt/NbWO, active Pt, low H pressure, oxygen vacancies,
Online Access:https://research.wur.nl/en/publications/synchronizing-deoxygenation-and-hydrogenation-to-effect-glycerol-
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spelling dig-wur-nl-wurpubs-6300662024-12-04 Chen, Jinghu Huang, Hong Pan, Hu Cao, Yongyong Jiang, Lingchang Xia, Qineng Meng, Xiangtong Qiu, Jieshan Zuilhof, Han Liu, Shaomin Article/Letter to editor ACS Sustainable Chemistry and Engineering 12 (2024) 16 ISSN: 2168-0485 Synchronizing Deoxygenation and Hydrogenation to Effect Glycerol Hydrogenolysis over Pt/Nb2W15O50 at Low H2 Pressure 2024 The selective hydrogenolysis of glycerol to 1,3-propanediol (1,3-PDO) necessitates the precise tandem reactions of deoxygenation at a specific location and the ensuing hydrogenation steps. Herein, a solid solution-supported catalyst Pt/Nb2W15O50 was reported for the hydrogenolysis of glycerol to 1,3-PDO. We engineered the exceptional interaction between active Pt and oxygen vacancies to efficiently integrate the deoxygenation and hydrogenation steps in tandem. The strong interaction between active Pt and oxygen vacancies was established via hydrogen (H2) spillover and induced the generation of 1,3-PDO in situ. This synergistic effect confers Pt/Nb2W15O50 with high catalytic performance, combining a 75.6% conversion of glycerol and 66.5% selectivity to 1,3-PDO at a low H2 pressure of 1.0 MPa (noting that most catalysts require H2 pressures of ≥4 MPa). Moreover, the structure-performance relationship validated that there is a linear correlation between active Pt, oxygen vacancies, and 1,3-PDO yield. This study provides mechanistic insights into further catalyst developments for the valorization of other biomass-derived oxygenates. en application/pdf https://research.wur.nl/en/publications/synchronizing-deoxygenation-and-hydrogenation-to-effect-glycerol- 10.1021/acssuschemeng.3c08096 https://edepot.wur.nl/658132 H spillover Pt/NbWO active Pt low H pressure oxygen vacancies Wageningen University & Research
institution WUR NL
collection DSpace
country Países bajos
countrycode NL
component Bibliográfico
access En linea
databasecode dig-wur-nl
tag biblioteca
region Europa del Oeste
libraryname WUR Library Netherlands
language English
topic H spillover
Pt/NbWO
active Pt
low H pressure
oxygen vacancies
H spillover
Pt/NbWO
active Pt
low H pressure
oxygen vacancies
spellingShingle H spillover
Pt/NbWO
active Pt
low H pressure
oxygen vacancies
H spillover
Pt/NbWO
active Pt
low H pressure
oxygen vacancies
Chen, Jinghu
Huang, Hong
Pan, Hu
Cao, Yongyong
Jiang, Lingchang
Xia, Qineng
Meng, Xiangtong
Qiu, Jieshan
Zuilhof, Han
Liu, Shaomin
Synchronizing Deoxygenation and Hydrogenation to Effect Glycerol Hydrogenolysis over Pt/Nb2W15O50 at Low H2 Pressure
description The selective hydrogenolysis of glycerol to 1,3-propanediol (1,3-PDO) necessitates the precise tandem reactions of deoxygenation at a specific location and the ensuing hydrogenation steps. Herein, a solid solution-supported catalyst Pt/Nb2W15O50 was reported for the hydrogenolysis of glycerol to 1,3-PDO. We engineered the exceptional interaction between active Pt and oxygen vacancies to efficiently integrate the deoxygenation and hydrogenation steps in tandem. The strong interaction between active Pt and oxygen vacancies was established via hydrogen (H2) spillover and induced the generation of 1,3-PDO in situ. This synergistic effect confers Pt/Nb2W15O50 with high catalytic performance, combining a 75.6% conversion of glycerol and 66.5% selectivity to 1,3-PDO at a low H2 pressure of 1.0 MPa (noting that most catalysts require H2 pressures of ≥4 MPa). Moreover, the structure-performance relationship validated that there is a linear correlation between active Pt, oxygen vacancies, and 1,3-PDO yield. This study provides mechanistic insights into further catalyst developments for the valorization of other biomass-derived oxygenates.
format Article/Letter to editor
topic_facet H spillover
Pt/NbWO
active Pt
low H pressure
oxygen vacancies
author Chen, Jinghu
Huang, Hong
Pan, Hu
Cao, Yongyong
Jiang, Lingchang
Xia, Qineng
Meng, Xiangtong
Qiu, Jieshan
Zuilhof, Han
Liu, Shaomin
author_facet Chen, Jinghu
Huang, Hong
Pan, Hu
Cao, Yongyong
Jiang, Lingchang
Xia, Qineng
Meng, Xiangtong
Qiu, Jieshan
Zuilhof, Han
Liu, Shaomin
author_sort Chen, Jinghu
title Synchronizing Deoxygenation and Hydrogenation to Effect Glycerol Hydrogenolysis over Pt/Nb2W15O50 at Low H2 Pressure
title_short Synchronizing Deoxygenation and Hydrogenation to Effect Glycerol Hydrogenolysis over Pt/Nb2W15O50 at Low H2 Pressure
title_full Synchronizing Deoxygenation and Hydrogenation to Effect Glycerol Hydrogenolysis over Pt/Nb2W15O50 at Low H2 Pressure
title_fullStr Synchronizing Deoxygenation and Hydrogenation to Effect Glycerol Hydrogenolysis over Pt/Nb2W15O50 at Low H2 Pressure
title_full_unstemmed Synchronizing Deoxygenation and Hydrogenation to Effect Glycerol Hydrogenolysis over Pt/Nb2W15O50 at Low H2 Pressure
title_sort synchronizing deoxygenation and hydrogenation to effect glycerol hydrogenolysis over pt/nb2w15o50 at low h2 pressure
url https://research.wur.nl/en/publications/synchronizing-deoxygenation-and-hydrogenation-to-effect-glycerol-
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