2020
DOI: 10.1016/j.molliq.2020.113388
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Curbed of molybdenum oxido-diperoxido complex on ionic liquid body of mesoporous Bipy-PMO-IL as a promising catalyst for selective sulfide oxidation

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Cited by 25 publications
(9 citation statements)
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“…Moreover, the heterogenous catalyst could be easily recovered and reused for ten cycles without any loss of catalytic activity (Supplementary Scheme S13). Moaser et al prepared a new heterogenous catalyst by immobilization of the molybdenum (VI)-based oxido-peroxido complex on periodic mesoporous organosilica-supported bipyridinium ionic liquid MoO(O 2 ) 2 @Bipy-PMO-IL and studied its catalytic performance in the selective oxidation of sulfides to sulfoxides with H 2 O 2 in water (Moaser et al, 2020). A number of aryl sulfides could be efficiently converted into the corresponding sulfoxides in good to high yields (75-91%) within a short reaction time of 30 min.…”
Section: Frontiers Inmentioning
confidence: 99%
“…Moreover, the heterogenous catalyst could be easily recovered and reused for ten cycles without any loss of catalytic activity (Supplementary Scheme S13). Moaser et al prepared a new heterogenous catalyst by immobilization of the molybdenum (VI)-based oxido-peroxido complex on periodic mesoporous organosilica-supported bipyridinium ionic liquid MoO(O 2 ) 2 @Bipy-PMO-IL and studied its catalytic performance in the selective oxidation of sulfides to sulfoxides with H 2 O 2 in water (Moaser et al, 2020). A number of aryl sulfides could be efficiently converted into the corresponding sulfoxides in good to high yields (75-91%) within a short reaction time of 30 min.…”
Section: Frontiers Inmentioning
confidence: 99%
“…The MoO(O 2 ) 2 @ Bipy-PMO-IL catalyst was reused for five consecutive runs without significant loss; however, the MoO(O 2 ) 2 @SBA-15 (without IL) significantly decreases its activity after the second run. The performance of the hybrid nanocomposite for the selective oxidation reaction of sulfides to sulfoxides under optimized conditions is summarized in Table 14 below (Moaser et al 2020).…”
Section: Oxidation Reactionmentioning
confidence: 99%
“…Our groups succeeded in engineering periodic mesoporous organosilicas (PMOs) 31–37 and 1D organosilica nanotube linkages with organic ethane and phenylene groups. 38 To further develop the application of organosilica nanotubes, we reported the enhanced durability of Ir-BPy-NT for water oxidation, 39 PCN-SNT and PCN-BSNT as efficient photocatalysts for H 2 generation 40 and metal-free amino-incorporated organosilica nanotubes for the cycloaddition of CO 2 to epoxides.…”
Section: Introductionmentioning
confidence: 99%