| Literature DB >> 26742716 |
Antonio Fernandez1, Jesus Ferrando-Soria1, Eufemio Moreno Pineda1, Floriana Tuna1, Iñigo J Vitorica-Yrezabal1, Christiane Knappke2, Jakub Ujma1,3, Christopher A Muryn1, Grigore A Timco1, Perdita E Barran1,3, Arzhang Ardavan4, Richard E P Winpenny1.
Abstract
Quantum information processing (QIP) would require that the individual units involved--qubits--communicate to other qubits while retaining their identity. In many ways this resembles the way supramoleEntities:
Year: 2016 PMID: 26742716 PMCID: PMC4729860 DOI: 10.1038/ncomms10240
Source DB: PubMed Journal: Nat Commun ISSN: 2041-1723 Impact factor: 14.919
Figure 1Supramolecular strategy for constructing large arrays of qubits using rotaxanes as ligands.
(a) Scheme for the components of the larger arrays. (b) Reactions to give larger [n]-rotaxanes. The numbers in parentheses refer to compounds discussed in the text.
Figure 2Single crystal structures of polyrotaxanes.
(a) [3]-rotaxane (2); (b) [4]-rotaxane (4); (c) [5]-rotaxane (7) and (d) [5]-rotaxane (8). Hydrogen atoms and pivalate groups omitted for clarity. Metal sites shown as polyhedra. Colour code: Cu, light blue; Cr, purple; Ni, teal; N, blue; O, red; C, grey; F, green; H omitted for clarity. Crystal and refinement parameters given in Supplementary Table 1.
Figure 3SAXS on [4]- and [7]-rotaxanes.
(a) SAXS data; (i) calculated diffraction from crystallographically determined structure of 4, (ii) experimental data from 4, (iii) experimental data from 9. The solid line in each spectra is the fit that is associated with the pair distribution function plots shown in b. (b) Pair distance distribution function; (i) fit to calculated SAXS data for 4, (ii) fit to experimental data collected for 4 and (iii) fit to experimental data collected for 9. Inset: schematic representation of 4 (top) and 9 (bottom). The pair distance distribution function curves presented were also correlated with Guinier plots and gyration radius calculations to ensure consistency within the data analysis.
Figure 4Proposed structure for [7]-rotaxane 9.
The proposed formula for this compound is [Fe2Co(μ3-O)(O2CBu)6{CH2{Cr7Ni(μ-F)(O2CBu)16}2}3]; colour code as Fig. 2.
Figure 5DEER data for compound 7.
Samples were measured in toluene at 2.6 K for three values of the magnetic field within the resonance line (3,912, 3,952 and 3,992 G). The probe and pump frequencies were υ1=9.7648 GHz and υ2=υ1–90 MHz, respectively. See Supplementary Methods for more experimental details.