Matches in SemOpenAlex for { <https://semopenalex.org/work/W2907103627> ?p ?o ?g. }
- W2907103627 endingPage "344" @default.
- W2907103627 startingPage "334" @default.
- W2907103627 abstract "The covalent grafting of Mn(II) Schiff base complexes onto ordered mesoporous (CMK-3) and three-dimensionally ordered macroporous (3DOM) carbon matrices was achieved and the resulting hybrid materials were characterized and evaluated as catalysts for alkene epoxidation with H2O2. The observed high catalytic performance of these hybrid materials is determined by the catalytic efficiency of the grafted Mn-complexes. On the other hand, N2 adsorption/desorption and SEM analysis indicated that the surface chemical modification of the supports occurred in the meso- and micro-porosity of the materials, leaving unaffected the macroporous structure of the 3DOM matrix. Thus, when the support material becomes a non-porous one, it results in very fast catalytic reaction time. In particular, it appears that the about 300 nm cavities of 3DOM do not affect the course of catalysis highlighting the role of the hybrids’ micro-properties. This behavior is discussed and is correlated to the non-porous nature in conjunction with the hydrophobic surface of these carbon materials." @default.
- W2907103627 created "2019-01-11" @default.
- W2907103627 creator A5052995543 @default.
- W2907103627 creator A5061632800 @default.
- W2907103627 creator A5078958692 @default.
- W2907103627 creator A5081603374 @default.
- W2907103627 date "2019-05-01" @default.
- W2907103627 modified "2023-10-02" @default.
- W2907103627 title "Surface chemical modification of macroporous and mesoporous carbon materials: Effect on their textural and catalytic properties" @default.
- W2907103627 cites W1513205147 @default.
- W2907103627 cites W1614416352 @default.
- W2907103627 cites W167397820 @default.
- W2907103627 cites W1968263178 @default.
- W2907103627 cites W1972457844 @default.
- W2907103627 cites W1976000202 @default.
- W2907103627 cites W1982784029 @default.
- W2907103627 cites W1986818240 @default.
- W2907103627 cites W1988745485 @default.
- W2907103627 cites W1991510391 @default.
- W2907103627 cites W1991905799 @default.
- W2907103627 cites W1992010969 @default.
- W2907103627 cites W1997116111 @default.
- W2907103627 cites W1999405338 @default.
- W2907103627 cites W2003152660 @default.
- W2907103627 cites W2008396012 @default.
- W2907103627 cites W2022120485 @default.
- W2907103627 cites W2028755877 @default.
- W2907103627 cites W2032667425 @default.
- W2907103627 cites W2042602209 @default.
- W2907103627 cites W2047159711 @default.
- W2907103627 cites W2054660233 @default.
- W2907103627 cites W2066337451 @default.
- W2907103627 cites W2069573714 @default.
- W2907103627 cites W2073346200 @default.
- W2907103627 cites W2073374386 @default.
- W2907103627 cites W2078714443 @default.
- W2907103627 cites W2083278900 @default.
- W2907103627 cites W2085158233 @default.
- W2907103627 cites W2087839426 @default.
- W2907103627 cites W2088381333 @default.
- W2907103627 cites W2089124524 @default.
- W2907103627 cites W2094476573 @default.
- W2907103627 cites W2095381792 @default.
- W2907103627 cites W2095426715 @default.
- W2907103627 cites W2099086640 @default.
- W2907103627 cites W2103504404 @default.
- W2907103627 cites W2106442422 @default.
- W2907103627 cites W2112140993 @default.
- W2907103627 cites W2129054488 @default.
- W2907103627 cites W2142379138 @default.
- W2907103627 cites W2152891913 @default.
- W2907103627 cites W2165062168 @default.
- W2907103627 cites W2171236786 @default.
- W2907103627 cites W2205408047 @default.
- W2907103627 cites W2235679284 @default.
- W2907103627 cites W2515435462 @default.
- W2907103627 cites W2607071893 @default.
- W2907103627 cites W2793687580 @default.
- W2907103627 cites W2799446661 @default.
- W2907103627 cites W4247424891 @default.
- W2907103627 doi "https://doi.org/10.1016/j.micromeso.2019.01.005" @default.
- W2907103627 hasPublicationYear "2019" @default.
- W2907103627 type Work @default.
- W2907103627 sameAs 2907103627 @default.
- W2907103627 citedByCount "14" @default.
- W2907103627 countsByYear W29071036272019 @default.
- W2907103627 countsByYear W29071036272020 @default.
- W2907103627 countsByYear W29071036272021 @default.
- W2907103627 countsByYear W29071036272022 @default.
- W2907103627 countsByYear W29071036272023 @default.
- W2907103627 crossrefType "journal-article" @default.
- W2907103627 hasAuthorship W2907103627A5052995543 @default.
- W2907103627 hasAuthorship W2907103627A5061632800 @default.
- W2907103627 hasAuthorship W2907103627A5078958692 @default.
- W2907103627 hasAuthorship W2907103627A5081603374 @default.
- W2907103627 hasConcept C104779481 @default.
- W2907103627 hasConcept C115537861 @default.
- W2907103627 hasConcept C127413603 @default.
- W2907103627 hasConcept C140205800 @default.
- W2907103627 hasConcept C150394285 @default.
- W2907103627 hasConcept C159985019 @default.
- W2907103627 hasConcept C161790260 @default.
- W2907103627 hasConcept C162711632 @default.
- W2907103627 hasConcept C171250308 @default.
- W2907103627 hasConcept C175583648 @default.
- W2907103627 hasConcept C178790620 @default.
- W2907103627 hasConcept C180577832 @default.
- W2907103627 hasConcept C185592680 @default.
- W2907103627 hasConcept C192562407 @default.
- W2907103627 hasConcept C27019838 @default.
- W2907103627 hasConcept C2775937945 @default.
- W2907103627 hasConcept C2776254738 @default.
- W2907103627 hasConcept C42360764 @default.
- W2907103627 hasConcept C521977710 @default.
- W2907103627 hasConcept C6648577 @default.
- W2907103627 hasConcept C82776694 @default.
- W2907103627 hasConceptScore W2907103627C104779481 @default.
- W2907103627 hasConceptScore W2907103627C115537861 @default.