Selena J Lockyer, Lubomir Loci, George F S Whitehead, Inigo J Vitorica-Yrezabal, Grigore A Timco, Alice M Bowen, Eric J L McInnes, Richard E P Winpenny
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引用次数: 0
Abstract
We report the synthesis of extended hybrid organic-inorganic rotaxanes based on (pyCH2NH2CH2CH2py)[TiIV7GaIIIO8(O2CtBu)16] (1) and (pyCH2NH2CH2py)[TiIV7GaIIIO8(O2CtBu)16] (3) building blocks, containing an anionic macrocycle and doubly pyridyl-terminated secondary ammonium threads. Reaction of 1 and 3 with [Cu(hfac)2] (hfac = 1,1,1,5,5,5-hexafluoroacetylacetonate) gives {[Cu(hfac)2]3[1]2} (2) and {[Cu(hfac)2]2[3]} (4), respectively, which are characterized by single-crystal X-ray crystallography. The products are controlled by the differing steric demands imposed by the two arms of the thread. The structure of 2 is an extended [3]rotaxane, with two molecules of 1 binding to a central [Cu(hfac)2] molecule via the longer arm of the thread, and two [Cu(hfac)2] units terminating the structure at the shorter arm. The structure of 4, where both arms of the thread are short, is an extended [2]rotaxane terminated by two molecules of [Cu(hfac)2]. The Cu…Cu…Cu fragment in 2 is linear, with the central Cu lying on an inversion center and with a separation between the terminal copper ions of 31.3 Å. Double Electron-Electron Resonance (DEER; also known as PELDOR) spectroscopy proves that the [3]rotaxane structure remains intact in solution, detecting both terminal…center and terminal…terminal Cu…Cu interactions, with orientation-selective measurements demonstrating that there is a rearrangement of the structure at the terminal positions on dissolution.
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