| Literature DB >> 34094116 |
Gordon W Honeyman1, David R Armstrong1, William Clegg2, Eva Hevia1, Alan R Kennedy1, Ross McLellan1, Samantha A Orr1, John A Parkinson1, Donna L Ramsay1, Stuart D Robertson1, Stephen Towie1, Robert E Mulvey1.
Abstract
Regioselective 1,1',3,3'-tetrazincation [C-H to C-Zn(Entities:
Year: 2020 PMID: 34094116 PMCID: PMC8152701 DOI: 10.1039/d0sc01612h
Source DB: PubMed Journal: Chem Sci ISSN: 2041-6520 Impact factor: 9.825
Scheme 1Synthetic protocol for accessing the tetrazincated ferrocene complex.
Fig. 1Molecular structure of one independent molecule of the tetrazincated ferrocene [Na4(TMP)4Zn4(tBu)4{(C5H3)2Fe}] (1, top) and DFT optimised structure (1calc, bottom). Ellipsoids are shown at 50% probability and all hydrogen atoms have been removed for clarity. Selected bond lengths (Å) and angles (°) for 1calc: Na1–N1, 2.374; Zn1–N1, 2.046; Zn1–CFc, 2.120; Zn1–C, 2.045; Na2–C, 2.883; Na2–N2, 2.414; Na2, CFc, 2.624, 2.651; Zn2–CFc, 2.085; Zn2–N2, 2.041; Zn2–C, 2.061; Na1–C, 2.922; Na1–N1–Zn1, 92.1; Na1–CFc–Zn1, 83.1; N1–Zn1–CFc, 102.7; N1–Na1–CFc, 80.5; Na2–N2–Zn2, 83.9; Na2–CFc–Zn2, 77.3; N2–Zn2–CFc, 112.6; N2–Na2–CFc, 85.2; CFc–Na2–CFc, 87.0.
Fig. 2Alternative perspective looking through the Na⋯Na axis, emphasising the “W-isomeric” form of complex 1.
Fig. 3Space-filling model of complex 1calc.
Fig. 4Potential interconversion of major isomer of 1 to its other enantiomer via a minor intermediate, with proton numbering system used in discussion shown for clarity. Colour coding is used to clarify movement of ligands upon rearrangement and not to specify whether a ligand is bridging/capping for example.
Scheme 2Divergent reactivity of complex 1 with toluene and pyridine.
Fig. 5Molecular structure of the tetrazincated ferrocene complex [Na4(TMP)4Zn4(tBu)2(CH2Ph)2{(C5H3)2Fe}] (2, top) and DFT optimised structure (2calc, bottom). Ellipsoids are shown at 50% probability and all hydrogen atoms have been removed for clarity.
Selected bond parameters (Å and °) of complex 2 (values in bold represent relevant calculated parameters in 2calc)
| M(1) | M(2) | M(3) | M(4) | |
|---|---|---|---|---|
| Zn–CFc | 2.087(10), | 2.022(10), | 2.016(10), | 2.076(10), |
| Zn–CBz | — | 2.031(11), | 2.049(10), | — |
| Zn–C | 2.072(12) | — | — | 2.059(12) |
| Zn–NTMP | 2.017(9), | 2.013(9), | 2.018(8), | 2.020(9), |
| Na–NTMP | 2.447(9), | 2.386(10), | 2.355(10), | 2.477(9), |
| Na–CFc | 2.456(4) | 2.707(11), 2.562(12), | 2.698(10), 2.562(11), | 2.498(4) |
| Na–CBz | 2.711(3) | — | — | 2.686(5) |
| Na–C | — | 2.847(15) | 2.812(13) | — |
| C–Zn–CFc | 120.2(5) | 116.6(5) | 116.8(4) | 116.8(4) |
| C–Zn–NTMP | 134.2(4) | 127.5(4) | 127.8(4) | 135.1(4) |
| CFc–Zn–NTMP | 103.8(4), | 115.8(4), | 114.8(4), | 104.1(4), |
| CBz–Na–NTMP | 141.8(2) | — | — | 139.6(3) |
| CBz–Na–CFc | 112.2(1) | — | — | 114.5(2) |
| CFc–Na–NTMP | 106.0(3) | — | — | 105.8(2) |
| CFc–Na–CFc | — | 86.4(3), | 85.9(3), | — |
| CFc–Na–NTMP | — | 152.1(3), 84.0(3), | 149.1(3), 84.3(3), | — |
| Na–NTMP–Zn | 92.6(3), | 83.5(3), | 84.0(3), | 91.0(3), |
| Na–CFc–Zn | 84.9(4), | 75.4(3), | 75.6(3), | 84.6(3), |
Distance to benzyl is to centroid of aromatic ring.
Distance is to closest methyl carbon.
Angle at benzyl is from centroid of aromatic ring.
Angle at ferrocene is from centroid of Cp ring.
Fig. 6Structure emphasising the asymmetric unit of sodium zincate {[Na·4py][Zn(py*)2(tBu)·py]}∞ (3). Ellipsoids are shown at 50% probability and all hydrogen atoms have been removed for clarity. Selected bond lengths (Å) and angles (°): Na1–N1, 2.512(4); Na1–N2, 2.586(5); Na1–N3, 2.533(5); Na1–N4, 2.600(5); Na1–N5, 2.583(5); Na1–N6, 2.548(4); Zn1–N7, 2.254(3); Zn1–C23, 2.057(5); Zn1–C28, 2.061(4); Zn1–C36, 2.049(4); N1–Na1–N2, 89.52(15); N1–Na1–N3, 176.30(15); N1–Na1–N4, 88.09(15); N1–Na1–N5, 91.30(15); N1–Na1–N6, 93.76(13); N2–Na1–N3, 87.09(15); N2–Na1–N4, 177.04(16); N2–Na1–N5, 88.38(14); N2–Na1–N6, 92.62(14); N3–Na1–N4, 95.25(15); N3–Na1–N5, 87.13(15); N3–Na1–N6, 87.87(14); N4–Na1–N5, 89.93(15); N4–Na1–N6, 89.28(14); N5–Na1–N6, 174.85(15); C23–Zn1–C28, 114.28(18); C23–Zn1–C36, 117.38(19); C23–Zn1–N7, 97.57(18); C28–Zn1–C36, 119.81(18); C28–Zn1–N7, 99.22(17); C36–Zn1–N7, 102.47(14).
Fig. 7Propagation of {[Na·4py][Zn(py*)2(tBu)·py]}∞ (3) into a polymer shown from the side and above. Ellipsoids are shown at 50% probability, all hydrogen atoms have been removed and all tBu carbon atoms and neutral donor pyridine ligands are highly transparent for clarity.
Fig. 8Aromatic region of the 1H NMR spectrum (in CDCl3) of work-up products after reaction of complex 1 with pyridine followed by an iodine quench.