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A tris-amine and oxy-ether functionalised macrocyclic wheel (NaphMC) and various phenanthroline based multidentate axles (L1, L2 and L3) are utilised for the formation of [n]pseudorotaxanes (n = 2, 3, 4) in high yields via Cu(ii) temptation and π-π stacking interactions. The systematic development of threaded supramolecular architectures i.e. [2]pseudorotaxane {[2]CuPR(ClO)}, [3]pseudorotaxane {[3]CuPR(ClO)} and [4]pseudorotaxane {[4]CuPR(ClO)} from bidentate L1, linear tetradentate L2 and tripodal hexadentate L3 respectively is described. All the [n]pseudorotaxanes are well characterized by several spectroscopy and other experimental techniques such as electrospray ionization mass spectrometry (ESI-MS), isothermal titration calorimetric (ITC) study, UV/Vis, EPR, IR and elemental analysis. Moreover, the single crystal X-ray analysis of [2]pseudorotaxane confirmed the threading of L1 in the cavity of NaphMC, resulting in the formation of a penta-coordinated Cu(ii) ternary complex. ITC studies revealed the order of binding constant values for the formation of [n]pseudorotaxanes from the NaphMC-Cu(ii) complex and multidentate axles as L3 > L2 > L1. Finally, we have also shown the ability of Ni(ii) to act as a metal template in the formation of [n]pseudorotaxanes.
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http://dx.doi.org/10.1039/c9dt01067j | DOI Listing |
Chem Asian J
June 2025
Department of Chemical Science and Technology, NIT Patna, Patna, 800005, India.
Two metastable [2]rotaxanes incorporating [23]crown-7-ether, with cyclohexyl and 4-isopropylphenyl slippage stoppers, are explored. The axle component of metastable rotaxanes is comprised of a secondary ammonium station and an anthracene fluorophore. In the presence of fluoride anion, the deslippage of [23]crown-7-ether over the slippage stoppers is induced by ion-pair formation with fluoride anion, followed by neutralization.
View Article and Find Full Text PDFChem Commun (Camb)
July 2025
Institute for Chemical Research, Kyoto University, Uji, Kyoto, Japan.
Pseudorotaxanes, which are formed by macrocyclic host molecules and linear guest molecules, show potential in molecular devices and surface applications. In this study, ethoxy-functionalized pillar[5]arene (P5A) and amphiphilic linear fatty acid guests were self-assembled into oriented monolayers at the air-water interface. The fatty acid structure dictates the monolayer formation: [2]pseudorotaxane-based, [3]pseudorotaxane-based and phase-separated monolayers.
View Article and Find Full Text PDFChemistry
June 2025
Department of Chemistry and Photon Science Institute, The University of Manchester, Oxford Road, Manchester, M13 9PL, UK.
The extension of previous studies of heterometallic rings (HMRs) is described, including new synthetic chemistry and physics. These HMRs feature a ring of, typically, eight metal centers with a central charge-balancing cation. New HMRs and related molecules are described, varying the number of metals present.
View Article and Find Full Text PDFNat Chem
July 2025
van 't Hoff Institute for Molecular Sciences, Universiteit van Amsterdam, Amsterdam, the Netherlands.
Selective formation of multicomponent structures via the self-assembly of numerous building blocks is ubiquitous in biological systems but challenging to emulate synthetically. More components introduce additional possibilities for kinetic intermediates with trap-state ability, hampering access to desired products. In covalent chemistry, templates, reagents and catalysts are applied to create alternative pathways for desired product formation.
View Article and Find Full Text PDFOrg Lett
May 2025
Department of Chemistry, National Taiwan University, No. 1, Sec. 4, Roosevelt Road, Taipei 106, Taiwan.
Employing 9-BBN and pinacol boronic ester as surrogate stoppers, pseudorotaxanes presenting terminal alkenes can be transformed into organoborane or organoboronate rotaxanes, respectively. Various boron-based reactions can then be used to replace these temporary stoppers with bulky derivatives of aromatic bromides, α-bromo ketones, or 1-bromo-1-alkynes, facilitating the selective formation of sp-sp, sp-sp, and sp-sp carbon-carbon single bonds, respectively.
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