Chiral Macroporous MOF Surfaces for Electroassisted Enantioselective Adsorption and Separation

  • Duangkamon Suttipat
  • , Sopon Butcha
  • , Sunpet Assavapanumat
  • , Thana Maihom
  • , Bhavana Gupta
  • , Adeline Perro
  • , Neso Sojic
  • , Alexander Kuhn
  • , Chularat Wattanakit

Research output: Contribution to journalArticlepeer-review

59 Scopus citations

Abstract

The development of surfaces with chiral features is a fascinating challenge for modern materials science, especially when they are used for chiral separation technologies. In this contribution, the design of hierarchically structured chiral macroporous zeolitic imidazolate framework-8 (ZIF-8) electrodes is presented. They are elaborated by an electrochemical deposition-dissolution technique based on the electrodeposition of metal through a colloidal crystal template, followed by controlled electrooxidation. This generates locally metal cations, which can interact with a chiral ligand present in the solution to form metal-organic frameworks (MOFs). The macroporous structure facilitates the access of the chiral recognition sites, located in the mesoporous MOF, and thus helps to overcome mass transport limitations. The efficiency of the designed functional materials for chiral adsorption and separation can be fine-tuned by applying an adjustable electric potential to the electrode surfaces. This hierarchical chiral ZIF-8 structure was deposited at the walls of a microfluidic device and used as a stationary phase for enantioselective separation. The potential-controlled interaction between the stationary phase and the chiral analytes allows baseline separation of two enantiomers. This opens up interesting perspectives for using hierarchically structured chiral MOFs as an efficient material for the selective adsorption and separation of chiral compounds.

Original languageEnglish
Pages (from-to)36548-36557
Number of pages10
JournalACS Applied Materials and Interfaces
Volume12
Issue number32
DOIs
StatePublished - 12 Aug 2020
Externally publishedYes

Keywords

  • MOF
  • chirality
  • electrochromatography
  • electrodeposition
  • enantioselectivity
  • macroporous materials

ASJC Scopus subject areas

  • General Materials Science

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