Decorating titania with ultrasmall UiO-66-H crystallites enables quantitative photocatalytic oxidation of methane to oxygenates

G Geqian Fang (UMR 8181-UCCS-Unité de Catalyse et Chimie du Solide) N Nour Alhajjar W Wenjun Yu (CAS Key Laboratory of Science and Technology on Applied Catalysis) M Maya Marinova K Karima Ben Tayeb J Jian Lin T Thomas Roland P Pardis Simon V Vincent De Waele V Vitaly V. Ordomsky A Andrei Y. Khodakov

Abstract

Abstract Selective photocatalytic oxidation of methane to liquid oxygenates under ambient conditions remains challenging due to the inert C–H bond and propensity for over-oxidation. Controlling carrier transfer and reactive oxygen species is therefore essential to the selective methane photooxidation. Ultrasmall zirconium metal–organic framework (UiO-66-H) nanocrystals in situ grown on titania form a heterojunction that promotes efficient charge separation and tunes the interfacial band alignment. Comprehensive experiments and characterization reveal that this heterojunction precisely regulates • OH and • OOH generation, enabling controlled, radical-mediated oxidation of methane with a competitive oxygenate yield and nearly 100% selectivity at room temperature using air as an oxidant. In this work, ultrasmall metal–organic framework–semiconductor heterojunctions with a built-in electric field provide an effective route for developing efficient, low-cost photocatalysts for methane chemical valorization under mild, solar-driven conditions.

Article Details

Volume / Issue Vol. 17, Issue 1
Published April 29, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (11)

G

Geqian Fang

UMR 8181-UCCS-Unité de Catalyse et Chimie du Solide

N

Nour Alhajjar

W

Wenjun Yu

CAS Key Laboratory of Science and Technology on Applied Catalysis

M

Maya Marinova

K

Karima Ben Tayeb

J

Jian Lin

T

Thomas Roland

P

Pardis Simon

V

Vincent De Waele

V

Vitaly V. Ordomsky

A

Andrei Y. Khodakov