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A water-soluble Pd 4 molecular tweezer for selective encapsulation of isomeric quinones and their recyclable extraction.

Dharmraj PrajapatiPallab BhandariEnnio ZangrandoPartha Sarathi Mukherjee
Published in: Chemical science (2024)
Quinones (QN) are one of the main components of diesel exhaust particulates that have significant detrimental effects on human health. Their extraction and purification have been challenging tasks because these atmospheric particulates exist as complex matrices consisting of inorganic and organic compounds. In this report, we introduce a new water soluble Pd 4 L 2 molecular architecture (MT) with an unusual tweezer-shaped structure obtained by self-assembly of a newly designed phenothiazine-based tetra-imidazole donor (L) with the acceptor cis -[(tmeda)Pd(NO 3 ) 2 ] (M) [ tmeda = N , N , N ', N '-tetramethylethane-1,2-diamine]. The molecular tweezer encapsulates some quinones existing in diesel exhaust particulates (DEPs) leading to the formation of host-guest complexes in 1 : 1 molar ratio. Moreover, MT binds phenanthrenequinone (PQ) more strongly than its isomer anthraquinone (AQ), an aspect that enables extraction of PQ with a purity of 91% from an equimolar mixture of the two isomers. Therefore, MT represents an excellent example of supramolecular receptor capable of selective aqueous extraction of PQ from PQ/AQ with many cycles of reusability.
Keyphrases
  • water soluble
  • human health
  • particulate matter
  • risk assessment
  • single molecule
  • climate change
  • air pollution
  • quantum dots
  • perovskite solar cells