<P>Successful encapsulation of polyoxometalate (POM) within the framework of a mesoporous iron trimesate MIL-100(Fe) sample has been achieved by direct hydrothermal synthesis in the absence of fluorine. XRPD, <SUP>31</SUP>P MAS NMR, ...
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https://www.riss.kr/link?id=A107638576
Canioni, Romain ; Roch-Marchal, Catherine ; Sé ; cheresse, Francis ; Horcajada, Patricia ; Serre, Christian ; Hardi-Dan, Menaschi ; Fé ; rey, Gé ; rard ; Grenè ; che, Jean-Marc ; Lefebvre, Fré ; dé ; ric ; Chang, Jong-San ; Hwang, Young-Kyu ; Lebedev, Oleg ; Turner, Stuart ; Van Tendeloo, Gustaaf
2011
-
SCI,SCIE,SCOPUS
학술저널
1226-1233(8쪽)
0
상세조회0
다운로드다국어 초록 (Multilingual Abstract)
<P>Successful encapsulation of polyoxometalate (POM) within the framework of a mesoporous iron trimesate MIL-100(Fe) sample has been achieved by direct hydrothermal synthesis in the absence of fluorine. XRPD, <SUP>31</SUP>P MAS NMR, ...
<P>Successful encapsulation of polyoxometalate (POM) within the framework of a mesoporous iron trimesate MIL-100(Fe) sample has been achieved by direct hydrothermal synthesis in the absence of fluorine. XRPD, <SUP>31</SUP>P MAS NMR, IR, EELS, TEM and <SUP>57</SUP>Fe Mössbauer spectrometry corroborate the insertion of POM within the cavities of the MOF. The experimental Mo/Fe ratio is 0.95, in agreement with the maximum theoretical amount of POM loaded within the pores of MIL-100(Fe), based on steric hindrance considerations. The POM-MIL-100(Fe) sample exhibits a pore volume of 0.373 cm<SUP>3</SUP> g<SUP>−1</SUP> and a BET surface area close to 1000 m<SUP>2</SUP> g<SUP>−1</SUP>, indicating that small gas molecules can easily diffuse inside the cavities despite the presence of heavy phosphomolybdates. These latter contribute to the decrease in the overall surface area, due to the increase in molar weight, by 65%. Moreover, the resulting Keggin containing MIL-100(Fe) solid is stable in aqueous solution with no POM leaching even after more than 2 months. In addition, no exchange of the Keggin anions by tetrabutylammonium perchlorate in organic media has been observed.</P> <P>Graphic Abstract</P><P>Keggin 12-phosphomolybdates were encapsulated into mesoporous iron trimesate MIL-100(Fe) by direct synthesis, maintaining gas accessibility and avoiding POM leaching.
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