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Few-Unit-Cell MFI Zeolite Synthesized using a Simple Di-quaternary Ammonium Structure-Directing Agent

  • Peng Lu
  • , Supriya Ghosh
  • , Matheus Dorneles de Mello
  • , Huda Sharbini Kamaluddin
  • , Xinyu Li
  • , Gaurav Kumar
  • , Xuekui Duan
  • , Milinda Abeykoon
  • , J. Anibal Boscoboinik
  • , Liang Qi
  • , Heng Dai
  • , Tianyi Luo
  • , Shaeel Al-Thabaiti
  • , Katabathini Narasimharao
  • , Zaheer Khan
  • , Jeffrey D. Rimer
  • , Alexis T. Bell
  • , Paul Dauenhauer
  • , K. Andre Mkhoyan
  • , Michael Tsapatsis
  • Johns Hopkins University
  • University of Minnesota Twin Cities
  • University of Delaware
  • Brookhaven National Laboratory
  • King Abdulaziz University
  • Lawrence Berkeley National Laboratory
  • University of California at Berkeley
  • University of Houston
  • Johns Hopkins University Applied Physics Laboratory

Research output: Contribution to journalArticlepeer-review

33 Scopus citations

Abstract

Synthesis of a pentasil-type zeolite with ultra-small few-unit-cell crystalline domains, which we call FDP (few-unit-cell crystalline domain pentasil), is reported. FDP is made using bis-1,5(tributyl ammonium) pentamethylene cations as structure directing agent (SDA). This di-quaternary ammonium SDA combines butyl ammonium, in place of the one commonly used for MFI synthesis, propyl ammonium, and a five-carbon nitrogen-connecting chain, in place of the six-carbon connecting chain SDAs that are known to fit well within the MFI pores. X-ray diffraction analysis and electron microscopy imaging of FDP indicate ca. 10 nm crystalline domains organized in hierarchical micro-/meso-porous aggregates exhibiting mesoscopic order with an aggregate particle size up to ca. 5 μm. Al and Sn can be incorporated into the FDP zeolite framework to produce active and selective methanol-to-hydrocarbon and glucose isomerization catalysts, respectively.

Original languageEnglish
Pages (from-to)19214-19221
Number of pages8
JournalAngewandte Chemie - International Edition
Volume60
Issue number35
DOIs
StatePublished - Aug 23 2021

Keywords

  • adsorption
  • catalysis
  • di-quaternary structure directing agents
  • pentasil
  • ultrasmall crystalline domain

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