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Flexible Porous Organic Polymers with α,β-Enone-Linkage via AlCl3-Catalyzed Horner–Wadsworth–Emmons Polymerization for Pd Recovery

  • Ze Rui Meng
  • , Ze Shuai Qi
  • , Boya Kuang
  • , Guo Qing Ren
  • , Hanyuan Chen
  • , Yu Wang
  • , Yan Huang
  • , Xiang Guo Hu
  • , Mu Hua Huang*
  • *Corresponding author for this work
  • Beijing Institute of Technology
  • Jiangxi Normal University

Research output: Contribution to journalLetterpeer-review

Abstract

In this work, highly porous organic polymers with α,β-enone-linkage were synthesized via the Horner–Wadsworth–Emmons (H-W-E) polymerization in 10–20 g, and the catalytic amount of AlCl3 was found to increase the BET surface area of the as-prepared BIT-POP-120 and BIT-POP-121 dramatically (up to 716 m2 g–1), much higher than that of enone-liked porous organic polymers (POPs) reported. More importantly, this H-W-E polymerization of triphsophonate 4 with 2,5-hexanedione 6 provided a powerful way to offer 18% flexible moiety in BIT-POP-121 based on low-field NMR. Very high Pd/Pt selectivity of 3.54 and 28 was observed for BIT-POP-121 respectively, based on the adsorption capacity and Kd value using a binary solution of Pd2+ and Pt2+. This is very promising for the Pd recovery from the spent automotive catalytic converters in the future. The powerful strategy for making flexible POPs by H–W-E polymerization using easily available and stable aliphatic diketones will lead the development of high-performance flexible POPs for broad applications including recovery of precious metals in the near future.

Original languageEnglish
Pages (from-to)1028-1034
Number of pages7
JournalACS Macro Letters
Volume15
Issue number7
DOIs
Publication statusPublished - 21 Jul 2026
Externally publishedYes

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