Switchable Metal‐Ion Selectivity in Sulfur‐Functionalised Pillar[5]arenes and Their Host‐Guest Complexes

Author:

Todee Bunyaporn1ORCID,Sanae Patharaporn1,Ruengsuk Araya1ORCID,Janthakit Pattarapapa2ORCID,Promarak Vinich2ORCID,Tantirungrotechai Jonggol1ORCID,Sukwattanasinitt Mongkol3ORCID,Limpanuparb Taweetham4ORCID,Harding David J.5ORCID,Bunchuay Thanthapatra1ORCID

Affiliation:

1. Department of Chemistry and Center of Excellence for Innovation in Chemistry (PERCH-CIC) Faculty of Sciense Mahidol University Bangkok 10400 Thailand

2. Department of Materials Science and Engineering School of Molecular Science and Engineering Vidyasirimedhi Institute of Science and Technology (VISTEC) Rayong 21210 Thailand

3. Department of Chemistry Faculty of Science Chulalongkorn University Bangkok 10330 Thailand

4. Science Division Mahidol University International College Mahidol University Salaya 73170 Thailand

5. Department of Chemistry Institute of Science Suranaree University of Technology Nakhon Ratchasima 30000 Thailand

Abstract

AbstractNucleophilic substitution of pertosylated pillar[5]arene (P‐OTs) with commercially available sulfur containing nucleophiles (KSCN, KSAc, and thiophenol), yields a series of sulfur‐functionalised pillar[5]arenes. DLS results and SEM images imply that these pillararene macrocycles self‐assemble in acetonitrile solution, while X‐ray crystallographic evidence suggests solvent‐dependent assembly in the solid state. The nature of the sulfur substituents decorating the rim of the pillararene controls binding affinities towards organic guest encapsulations within the cavity and dictates metal‐ion binding properties through the formation of favorable S−M2+ coordination bonds outside the cavity, as determined by 1H NMR and fluorescence spectroscopic experiments. Addition of a dinitrile guest containing a bis‐triazole benzene spacer (btn) induced formation of pseudorotaxane host‐guest complexes. Fluorescence emission signals from these discrete macrocycles were significantly attenuated in the presence of either Hg2+ or Cu2+ in solution. Analogous titrations utilizing the corresponding pseudorotaxanes alter the binding selectivity and improve fluorescence sensing sensitivity. In addition, preliminary liquid‐liquid extraction studies indicate that the macrocycles facilitate the transfer of Cu2+ from the aqueous to the organic phase in comparison to extraction without pillar[5]arene ligands.

Funder

National Research Council of Thailand

Publisher

Wiley

Subject

General Chemistry,Biochemistry,Organic Chemistry

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