Room temperature stable CO <sub><i>x</i></sub> -free H<sub>2</sub> production from methanol with magnesium oxide nanophotocatalysts.

Liu, Zhengqing; Yin, Zongyou; Cox, Casandra; Bosman, Michel; Qian, Xiaofeng; Li, Na; Zhao, Hongyang; Du, Yaping et al. · Sci Adv · 2016

basic_science · Level V

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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 CO<sub>2</sub> 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/CO<sub>2</sub>-free H<sub>2</sub> production from liquid methanol at room temperature. The performance of MgO nanocrystals toward methanol dehydrogenation increases with time and approaches ~320 μmol g<sup>-1</sup> hour<sup>-1</sup> after a 2-day photocatalytic reaction. The CO <sub><i>x</i></sub> -free H<sub>2</sub> 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.

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