All-inorganic CeO2-TiO2 artificial photosynthesis system with forced heterojunctions for methane to C-C coupled products
| Title | All-inorganic CeO2-TiO2 artificial photosynthesis system with forced heterojunctions for methane to C-C coupled products |
| Publication Type | Journal Article |
| Year of Publication | 2026 |
| Authors | Kanungo, SS, Murali, A, Verma, D, Gopinath, CS |
| Journal | Iscience |
| Volume | 29 |
| Issue | 8 |
| Pagination | 117001 |
| Date Published | AUG |
| Type of Article | Article |
| Abstract | Sustainable and efficient photocatalytic conversion of small molecules to liquid fuels/chemicals needs a large extent of charge separation at heterojunctions and equal charge utilization at redox sites. Toward achieving this, visible-light absorbing CeO2 quantum dots (CeQDs) are directly assembled from the precursors (Ce3+ and OH-) into the TiO2 nanopores by the successive ionic layer adsorption and reaction method, and are subsequently integrated structurally and electronically. Assembly of CeQDs into TiO2 leads to a sub-trillion number of heterojunctions in 1 mg photocatalyst material. Concurrent activation of water and methane generates active radicals that help in selective ethanol and a minor amount of acetone formation. Product generation is further enhanced by deliberate reduction of the photocatalyst device, which enhances Ce3+ content and broadens the valence band with a significant change in electronic structure. The detailed analysis of the photocatalyst device and photocatalysis results reveals the charge transfer mechanism and the reaction pathway. |
| DOI | 10.1016/j.isci.2026.117001 |
| Type of Journal (Indian or Foreign) | Foreign |
| Impact Factor (IF) | 4.5 |

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