Atomically dispersed silver on nanosheet-stacked amorphous alumina for enhanced NOx reduction
- Authors
- Jang, Jeong-Un; So, Jungseob; Heo, Huiryung; Yoo, Chun-Jae; You, Young Woo; Kim, Young Jin; Koh, Dong-Yeun
- Issue Date
- 2025-10
- Publisher
- Elsevier BV
- Citation
- Chemical Engineering Journal, v.521
- Abstract
- Tailoring anchoring sites in Al2O3 to strengthen metal-support interactions (MSI) remains a challenge yet essential for designing robust single-atom catalysts. Herein, nanosheet-stacked amorphous alumina (mAl2O3) with enhanced surface area and abundant hydroxyl groups was prepared by controlling the thermal treatment protocol of an Al-containing MOF. Loading 1 wt% Ag onto mAl2O3 led to atomically dispersed Ag species due to strong MSI, enabled by effective anchoring onto terminal hydroxyl groups uniquely distributed on mAl2O3, where both OH-μ1-AlIV and OH-μ1-AlVI sites coexist, unlike conventional Al2O3, predominantly featuring OH-μ1-AlVI alone. In hydrocarbon selective catalytic reduction, Ag(1)/mAl2O3 demonstrated markedly higher deNOx activity, exceptional water resistance, and durability. Detailed surface studies confirmed the facilitated formation of reactive enolic species and surface nitrates (NO3−) on Ag(1)/mAl2O3, which accelerated isocyanate (−NCO) formation, the key intermediate for selective NOx reduction. This work introduces an innovative method to produce Al2O3 with tunable surface structures, fostering highly active single-atom catalysts.
- Keywords
- SELECTIVE CATALYTIC-REDUCTION; METAL-ORGANIC FRAMEWORKS; AG/AL2O3 CATALYST; GAMMA-ALUMINA; DENOX PERFORMANCE; WATER TOLERANCE; AL3+ IONS; SURFACE; PLATINUM; ETHANOL; MOF-derived alumina; Single atom catalyst; Terminal hydroxyls; NOx conversion; Silver
- ISSN
- 1385-8947
- URI
- https://pubs.kist.re.kr/handle/201004/153600
- DOI
- 10.1016/j.cej.2025.167052
- Appears in Collections:
- KIST Article > 2025
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