Open Research will be updating the system on Monday, 25 May 2026, from 8:15 to 8:45 AM. We apologise for any inconvenience caused.

Room temperature stable CO x -free H 2 production from methanol with magnesium oxide nanophotocatalysts

Loading...
Thumbnail Image

Date

Authors

Liu, Zhengqing
Yin, Zongyou
Cox, Casandra
Bosman, Michel
Qian, Xiaofeng
Li, Na
Zhao, Hongyang
Du, Yaping
Li, Ju
Nocera, Daniel

Journal Title

Journal ISSN

Volume Title

Publisher

American Association for the Advancement of Science

Abstract

Methanol, which contains 12.6 weight percent hydrogen, is a good hydrogen storage medium because it is a liquid at room temperature. However, by releasing the hydrogen, undesirable CO and/or CO2 byproducts are formed during catalytic fuel reforming. We show that alkaline earth metal oxides, in our case MgO nanocrystals, exhibit stable photocatalytic activity for CO/CO2-free H2 production from liquid methanol at room temperature. The performance of MgO nanocrystals toward methanol dehydrogenation increases with time and approaches ~320 μmol g−1 hour−1 after a 2-day photocatalytic reaction. The COx-free H2 production is attributed to methanol photodecomposition to formaldehyde, photocatalyzed by surface electronic states of unique monodispersed, porous MgO nanocrystals, which were synthesized with a novel facile colloidal chemical strategy. An oxygen plasma treatment allows for the removal of organic surfactants, producing MgO nanocrystals that are well dispersible in methanol.

Description

Keywords

Citation

Source

Science Advances

Book Title

Entity type

Access Statement

Open Access

License Rights

Restricted until