From digital blueprint to chemical reality: methanol to formaldehyde at ambient conditions

TitleFrom digital blueprint to chemical reality: methanol to formaldehyde at ambient conditions
Publication TypeJournal Article
Year of Publication2024
AuthorsMehta, S, Kasabe, M, Umbarkar, SB, Joshi, K
JournalApplied Surface Science
Volume669
Pagination160527
Date PublishedOCT
Type of ArticleArticle
ISSN0169-4332
KeywordsDFT, Formaldehyde, MeOH, ZnO
Abstract

Partial oxidation of methanol to value added product presents an intriguing yet challenging process. Among these products, formaldehyde is the simplest and one of the most vital aliphatic aldehydes, which has extensive application across various domains. Industrially, silver and iron-molybdenum oxides are used as catalysts for the conversion of methanol to formaldehyde at elevated temperatures (600 degrees C and 250-400 degrees C, respectively). However, in this computational and experimental study, we have demonstrated the efficacy of ZnO as a catalyst. Notably, in the presence of ZnO, methanol readily converts to formaldehyde even under ambient conditions. We employed periodic density functional theory (DFT) to explore (10 1 1) facet of ZnO to elucidate its interaction with methanol. Our comprehensive analysis identified the most active facet (10 1 1) involved in the spontaneous conversion of methanol to formaldehyde. Subsequently, experimental validation supported our theoretical findings, demonstrating the conversion of methanol to formaldehyde with 100% selectivity at room temperature and atmospheric pressure in the presence of ZnO. This study exemplifies the pivotal role of theory in catalyst design.

DOI10.1016/j.apsusc.2024.160527
Type of Journal (Indian or Foreign)

Foreign

Impact Factor (IF)

6.7

Divison category: 
Catalysis and Inorganic Chemistry
Physical and Materials Chemistry
Database: 
Web of Science (WoS)

Add new comment