Heteropoly Ionic Liquid Functionalized MOF-Fe: Synthesis, Characterization, and Catalytic Application in Selective Acetalization of Glycerol to Solketal as a Fuel Additive at Room Temperature, Solvent-Free Conditions

In this work, we have reported the synthesis of a series of heterogeneous catalysts, viz., [HMIm]3[PW12O40]@­MOF-Fe, [HMIm]3[PMo12O40]@­MOF-Fe, and [HMIm]4[SiW12O40]@­MOF-Fe, by a simple impregnation method. The catalysts were characterized by several techniques, such as FTIR, EDX, XRD, SEM, element...

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Published inPrecision Chemistry Vol. 1; no. 8; pp. 485 - 496
Main Authors Ali, Abdulaziz Abdullah Qasem, Siddiqui, Zeba N.
Format Journal Article
LanguageEnglish
Published University of Science and Technology of China and American Chemical Society 23.10.2023
American Chemical Society
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Abstract In this work, we have reported the synthesis of a series of heterogeneous catalysts, viz., [HMIm]3[PW12O40]@­MOF-Fe, [HMIm]3[PMo12O40]@­MOF-Fe, and [HMIm]4[SiW12O40]@­MOF-Fe, by a simple impregnation method. The catalysts were characterized by several techniques, such as FTIR, EDX, XRD, SEM, elemental mapping, and TGA. Among these materials, [HMIm]3[PW12O40]@­MOF-Fe had more acidic sites (confirmed by potentiometric titration) and high stability around 598 °C (confirmed by TGA). The catalytic prospect of the materials was examined through selective acetalization of glycerol to solketal as a fuel additive under solvent-free and room-temperature conditions. [HMIm]3[PW12O40]@­MOF-Fe exhibited the highest catalytic activity among the three catalysts in terms of glycerol conversion (100%), solketal selectivity (100%), and solketal yield (100%). A recyclability study of [HMIm]3[PW12O40]@­MOF-Fe showed that the material could be reused for up to 7 cycles with insignificant loss in its catalytic performance.
AbstractList In this work, we have reported the synthesis of a series of heterogeneous catalysts, viz., [HMIm] 3 [PW 12 O 40 ]@­MOF-Fe, [HMIm] 3 [PMo 12 O 40 ]@­MOF-Fe, and [HMIm] 4 [SiW 12 O 40 ]@­MOF-Fe, by a simple impregnation method. The catalysts were characterized by several techniques, such as FTIR, EDX, XRD, SEM, elemental mapping, and TGA. Among these materials, [HMIm] 3 [PW 12 O 40 ]@­MOF-Fe had more acidic sites (confirmed by potentiometric titration) and high stability around 598 °C (confirmed by TGA). The catalytic prospect of the materials was examined through selective acetalization of glycerol to solketal as a fuel additive under solvent-free and room-temperature conditions. [HMIm] 3 [PW 12 O 40 ]@­MOF-Fe exhibited the highest catalytic activity among the three catalysts in terms of glycerol conversion (100%), solketal selectivity (100%), and solketal yield (100%). A recyclability study of [HMIm] 3 [PW 12 O 40 ]@­MOF-Fe showed that the material could be reused for up to 7 cycles with insignificant loss in its catalytic performance.
In this work, we have reported the synthesis of a series of heterogeneous catalysts, viz., [HMIm]3[PW12O40]@­MOF-Fe, [HMIm]3[PMo12O40]@­MOF-Fe, and [HMIm]4[SiW12O40]@­MOF-Fe, by a simple impregnation method. The catalysts were characterized by several techniques, such as FTIR, EDX, XRD, SEM, elemental mapping, and TGA. Among these materials, [HMIm]3[PW12O40]@­MOF-Fe had more acidic sites (confirmed by potentiometric titration) and high stability around 598 °C (confirmed by TGA). The catalytic prospect of the materials was examined through selective acetalization of glycerol to solketal as a fuel additive under solvent-free and room-temperature conditions. [HMIm]3[PW12O40]@­MOF-Fe exhibited the highest catalytic activity among the three catalysts in terms of glycerol conversion (100%), solketal selectivity (100%), and solketal yield (100%). A recyclability study of [HMIm]3[PW12O40]@­MOF-Fe showed that the material could be reused for up to 7 cycles with insignificant loss in its catalytic performance.
Author Siddiqui, Zeba N.
Ali, Abdulaziz Abdullah Qasem
AuthorAffiliation Green Chemistry Laboratory, Organic Chemistry Division, Department of Chemistry
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  givenname: Abdulaziz Abdullah Qasem
  surname: Ali
  fullname: Ali, Abdulaziz Abdullah Qasem
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  givenname: Zeba N.
  orcidid: 0000-0002-0952-8608
  surname: Siddiqui
  fullname: Siddiqui, Zeba N.
  email: zeba.ch@amu.ac.in, siddiqui_zeba@yahoo.co.in, zns.siddiqui@gmail.com
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Keywords [HMIm]3[PW12O40]@­MOF-Fe
heterogeneous catalysis
MOF-Fe
selective acetalization
heteropoly ionic liquids
solketal
glycerol
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Snippet In this work, we have reported the synthesis of a series of heterogeneous catalysts, viz., [HMIm]3[PW12O40]@­MOF-Fe, [HMIm]3[PMo12O40]@­MOF-Fe, and...
In this work, we have reported the synthesis of a series of heterogeneous catalysts, viz., [HMIm] 3 [PW 12 O 40 ]@­MOF-Fe, [HMIm] 3 [PMo 12 O 40 ]@­MOF-Fe, and...
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Title Heteropoly Ionic Liquid Functionalized MOF-Fe: Synthesis, Characterization, and Catalytic Application in Selective Acetalization of Glycerol to Solketal as a Fuel Additive at Room Temperature, Solvent-Free Conditions
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