| Literature DB >> 29997807 |
J E M Lewis1, R J Bordoli2, M Denis1, C J Fletcher1, M Galli1, E A Neal2, E M Rochette1, S M Goldup1.
Abstract
We present an operationally simple approach to 2,2'-bipyridine macrocycles. Our method uses simple starting materials to produce these previously hard to access rotaxane precursors in remarkable yields (typically >65%) across a range of scales (0.1-5 mmol). All of the macrocycles reported are efficiently converted (>90%) to rotaxanes under AT-CuAAC conditions. With the requisite macrocycles finally available in sufficient quantities, we further demonstrate their long term utility through the first gram-scale synthesis of an AT-CuAAC [2]rotaxane and extend this powerful methodology to produce novel Sauvage-type molecular shuttles.Entities:
Year: 2016 PMID: 29997807 PMCID: PMC6005271 DOI: 10.1039/c6sc00011h
Source DB: PubMed Journal: Chem Sci ISSN: 2041-6520 Impact factor: 9.825
Optimisation of the Ni-mediated synthesis of macrocycle 2a
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| Entry | NiII source | M0 (equiv.) | Yield | |
| 1 | NiCl2·6H2O | Zn (2) | n.r. | |
| 2 | NiCl2·6H2O | Zn (2) | 7% | |
| 3 | NiCl2·6H2O | Zn (2) | 37% | |
| 4 | [Ni(PPh3)2Br2] | Zn (2) | 60% | |
| 5 | [Ni(PPh3)2Br2] | Zn (2) | 47% | |
| 6 | [Ni(PPh3)2Br2] | Zn (4) | 50% | |
| 7 | [Ni(PPh3)2Br2] | Mn (2) | 63% | |
| 8 | [Ni(PPh3)2Br2] | Mn (10) | 70% | |
Reagents and conditions: 0.1 mmol each 1a, NiII, NEt4I, 0.4 mmol PPh3 in total, DMF, 50 °C, 4 h.
Determined by 1H NMR analysis of the crude product.
5 mM conc. of 1a.
0.05 M conc. of 1a.
Pseudo-high dilution (4 h addition, 0.05 M final conc. of 1a).
THF as solvent. n.r. = no reaction.
Fig. 1Synthesis of macrocycles 2 at 2 mmol scale. Reaction conditions as in Table 1, entry 8. Macrocyclisation yield of the best previous synthesis. T = 70 °C. Solvent = DMF–THF (3 : 1). Yield from Br/I precursor.
Scheme 1Large scale macrocyclisation and AT-CuAAC reactions. Conditions as Table 1, entry 8. [Cu(MeCN)4](PF6), NPr2Et, CH2Cl2–EtOH (1 : 1), 80 °C, 18 h.
Scheme 2The AT-CuAAC synthesis and operation of bi-stable molecular shuttles 9. Reagents and conditions: (i) [Cu(MeCN)4](PF6), CH2Cl2, rt; (ii) 2a or 2e [Cu(MeCN)4](PF6), NiPr2Et, CH2Cl2, 80 °C; (iii) [Cu(MeCN)4](PF6), CDCl3; (iv) Zn(OTf)2, CDCl3. R = 3,5-di-Bu-C6H3.
Fig. 2Partial 1H NMR (500 MHz, CDCl3) of (a) 9a + Zn(OTf)2; (b) 9a + [Cu(MeCN)4](PF6); (c) 9a; (d) non-interlocked thread; (e) 9e; (f) 9e + [Cu(MeCN)4](PF6); (g) 9e + Zn(OTf)2. Selected signals assigned with labels as in Fig. 1 (macrocycle) and Scheme 2 (thread).