Matches in SemOpenAlex for { <https://semopenalex.org/work/W2007558846> ?p ?o ?g. }
- W2007558846 endingPage "24456" @default.
- W2007558846 startingPage "24450" @default.
- W2007558846 abstract "A method established in the present study has proven to be effective in the synthesis of Mn2O3 nanocrystals by the thermolysis of manganese(III) acetyl acetonate ([CH3COCHC(O)CH3]3−Mn) and Mn3O4 nanocrystals by the thermolysis of manganese(II) acetyl acetonate ([CH3COCHC(O)CH3]2Mn) on a mesoporous silica, SBA-15. In particular, Mn2O3 nanocrystals are the first to be reported to be synthesized on SBA-15. The structure, texture, and electronic properties of nanocomposites were studied using various characterization techniques such as N2 physisorption, X-ray diffraction (XRD), laser Raman spectroscopy (LRS), temperature-programmed reduction (TPR), transmission electron microscopy (TEM), and X-ray photoelectron spectroscopy (XPS). The results of powder XRD at low angles show that the framework of SBA-15 remains unaffected after generation of the manganese oxide (MnOx) nanoparticles, whereas the pore volume and the surface area of SBA-15 dramatically decreased as indicated by N2 adsorption−desorption. TEM images reveal that the pores of SBA-15 are progressively blocked with MnOx nanoparticles. The formation of the hausmannite Mn3O4 and bixbyite Mn2O3 structures was clearly confirmed by XRD. The surface structures of MnOx were also determined by LRS, XPS, and TPR. The crystalline phases of MnOx were identified by LRS with corresponding out-of-plane bending and symmetric stretching vibrations of bridging oxygen species (M−O−M) of both MnOx nanoparticles and bulk MnOx. We also observed the terminal MnO bonds corresponding to vibrations at 940 and 974 cm-1 for Mn3O4/SBA-15 and Mn2O3/SBA-15, respectively. These results show that the MnOx species to be highly dispersed inside the channels of SBA-15. The nanostructure of the particles was further identified by the TPR profiles. Furthermore, the chemical states of the surface manganese (Mn) determined by XPS agreed well with the findings of LRS and XRD. These results suggest that the method developed in the present study resulted in the production of MnOx nanoparticles on mesoporous silica SBA-15 by controlling the crystalline phases precisely. The thus-prepared nanocomposites of MnOx showed significant catalytic activity toward CO oxidation below 523 K. In particular, the MnOx prepared from manganese acetyl acetonate showed a higher catalytic reactivity than that prepared from Mn(NO3)2." @default.
- W2007558846 created "2016-06-24" @default.
- W2007558846 creator A5011546576 @default.
- W2007558846 creator A5027594937 @default.
- W2007558846 creator A5051238313 @default.
- W2007558846 creator A5057242677 @default.
- W2007558846 creator A5073739395 @default.
- W2007558846 creator A5083013838 @default.
- W2007558846 date "2006-11-11" @default.
- W2007558846 modified "2023-10-17" @default.
- W2007558846 title "Controlled Synthesis, Characterization, and Catalytic Properties of Mn<sub>2</sub>O<sub>3</sub> and Mn<sub>3</sub>O<sub>4</sub> Nanoparticles Supported on Mesoporous Silica SBA-15" @default.
- W2007558846 cites W1486641428 @default.
- W2007558846 cites W1519974453 @default.
- W2007558846 cites W1924929041 @default.
- W2007558846 cites W1968634298 @default.
- W2007558846 cites W1971367097 @default.
- W2007558846 cites W1976087694 @default.
- W2007558846 cites W1977034833 @default.
- W2007558846 cites W1985328420 @default.
- W2007558846 cites W1988745485 @default.
- W2007558846 cites W1989686935 @default.
- W2007558846 cites W1989854643 @default.
- W2007558846 cites W1992214743 @default.
- W2007558846 cites W1992387500 @default.
- W2007558846 cites W1993385169 @default.
- W2007558846 cites W1995041236 @default.
- W2007558846 cites W2000181186 @default.
- W2007558846 cites W2013129405 @default.
- W2007558846 cites W2018864861 @default.
- W2007558846 cites W2035329304 @default.
- W2007558846 cites W2038199340 @default.
- W2007558846 cites W2054495841 @default.
- W2007558846 cites W2056103079 @default.
- W2007558846 cites W2057242901 @default.
- W2007558846 cites W2057689769 @default.
- W2007558846 cites W2060167472 @default.
- W2007558846 cites W2061224423 @default.
- W2007558846 cites W2063563809 @default.
- W2007558846 cites W2072023633 @default.
- W2007558846 cites W2075579222 @default.
- W2007558846 cites W2078175789 @default.
- W2007558846 cites W2081876199 @default.
- W2007558846 cites W2083024533 @default.
- W2007558846 cites W2083608342 @default.
- W2007558846 cites W2087792316 @default.
- W2007558846 cites W2088379045 @default.
- W2007558846 cites W2088847150 @default.
- W2007558846 cites W2106154155 @default.
- W2007558846 cites W2110298885 @default.
- W2007558846 cites W2121069193 @default.
- W2007558846 cites W2136359657 @default.
- W2007558846 cites W2139793834 @default.
- W2007558846 doi "https://doi.org/10.1021/jp064941v" @default.
- W2007558846 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/17134200" @default.
- W2007558846 hasPublicationYear "2006" @default.
- W2007558846 type Work @default.
- W2007558846 sameAs 2007558846 @default.
- W2007558846 citedByCount "257" @default.
- W2007558846 countsByYear W20075588462012 @default.
- W2007558846 countsByYear W20075588462013 @default.
- W2007558846 countsByYear W20075588462014 @default.
- W2007558846 countsByYear W20075588462015 @default.
- W2007558846 countsByYear W20075588462016 @default.
- W2007558846 countsByYear W20075588462017 @default.
- W2007558846 countsByYear W20075588462018 @default.
- W2007558846 countsByYear W20075588462019 @default.
- W2007558846 countsByYear W20075588462020 @default.
- W2007558846 countsByYear W20075588462021 @default.
- W2007558846 countsByYear W20075588462022 @default.
- W2007558846 countsByYear W20075588462023 @default.
- W2007558846 crossrefType "journal-article" @default.
- W2007558846 hasAuthorship W2007558846A5011546576 @default.
- W2007558846 hasAuthorship W2007558846A5027594937 @default.
- W2007558846 hasAuthorship W2007558846A5051238313 @default.
- W2007558846 hasAuthorship W2007558846A5057242677 @default.
- W2007558846 hasAuthorship W2007558846A5073739395 @default.
- W2007558846 hasAuthorship W2007558846A5083013838 @default.
- W2007558846 hasConcept C120665830 @default.
- W2007558846 hasConcept C121332964 @default.
- W2007558846 hasConcept C127413603 @default.
- W2007558846 hasConcept C147789679 @default.
- W2007558846 hasConcept C150394285 @default.
- W2007558846 hasConcept C155672457 @default.
- W2007558846 hasConcept C161790260 @default.
- W2007558846 hasConcept C171250308 @default.
- W2007558846 hasConcept C175708663 @default.
- W2007558846 hasConcept C185592680 @default.
- W2007558846 hasConcept C191897082 @default.
- W2007558846 hasConcept C192562407 @default.
- W2007558846 hasConcept C2777496208 @default.
- W2007558846 hasConcept C2779851234 @default.
- W2007558846 hasConcept C2780050857 @default.
- W2007558846 hasConcept C2780301529 @default.
- W2007558846 hasConcept C40003534 @default.
- W2007558846 hasConcept C42360764 @default.
- W2007558846 hasConcept C528890316 @default.
- W2007558846 hasConcept C55493867 @default.
- W2007558846 hasConcept C82776694 @default.