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MOF-Based Supramolecule Helical Nanomaterials: Toward Highly Enantioselective Electrochemical Recognition of Penicillamine.

Lu ZhaoXuan KuangRui KuangLei TongZhaoxuan LiuYing HouXu SunZhiling WangQin Wei
Published in: ACS applied materials & interfaces (2019)
For the first time, we report the formation of a chiral MOF-based helical nanomaterial (h-HDGA@ZIF-67) through arranging zeolitic imidazolate framework (ZIF-67) nanocrystals on helical l-glutamic acid terminated bolaamphiphile (h-HDGA) via a facile process at room temperature. The self-assembly leads to the chiral function of the ZIF-67 from an achiral ligand. The h-HDGA@ZIF-67 served as a new type of electrochemical sensing interface for recognizing and quantifying Pen enantiomers that realize significant enantioselectivity, satisfactory stability, and reproducibility. The synergetic effect from ZIF-67 nanocrystals on h-HDGA and stereoselectivity of h-HDGA@ZIF-67 lead to the excellent enantioselectivity. The present strategy showed the first example of a chiral MOF-based supramolecule helical nanomaterial, presenting high enantioselectivity for electrochemical enantiomeric determination.
Keyphrases
  • room temperature
  • ionic liquid
  • capillary electrophoresis
  • molecularly imprinted
  • gold nanoparticles
  • metal organic framework
  • label free
  • solid phase extraction
  • case report
  • electron transfer
  • liquid chromatography