| Literature DB >> 31588294 |
Joel Häfliger1, Cody Ross Pitts1, Dustin Bornemann1, Roland Käser1, Nico Santschi1, Julie Charpentier1, Elisabeth Otth1, Nils Trapp1, René Verel1, Hans Peter Lüthi1, Antonio Togni1.
Abstract
We report a mild approach to the synthesis of difluoro(aryl)-λ3-iodanes (aryl-IF2 compounds) and tetrafluoro(aryl)-λ5-iodanes (aryl-IF4 compounds) using trichloroisocyanuric acid (TCICA) and potassium fluoride (KF). Under these reaction conditions, selective access to either the I(iii)- or I(v)-derivatives is predictable based solely on the substitution pattern of the iodoarene starting material. Moreover, the discovery of this TCICA/KF approach prompted detailed dynamic NMR, kinetic, computational, and crystallographic studies on the relationship between the IF2 group and the ortho-substituents on carefully designed probe molecules. It was during these experiments that the role of the ortho-substituent in inhibiting further oxidative fluorination of I(iii)-compounds to I(v)-compounds during the reaction with TCICA and KF was revealed. Additionally, a notable exception to this empirical trend is discussed herein. This journal is © The Royal Society of Chemistry 2019.Entities:
Year: 2019 PMID: 31588294 PMCID: PMC6685355 DOI: 10.1039/c9sc02162k
Source DB: PubMed Journal: Chem Sci ISSN: 2041-6520 Impact factor: 9.825
Fig. 1Mild and predictable access to aryl-IF2 and aryl-IF4 compounds based on iodoarene substitution pattern.
Screening for optimal reaction conditions
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| Entry | TCICA (equiv.) | KF (equiv.) | Additive | Temp. (°C) | Yield (%) |
| 1 | 2.0 | — | — | rt | — |
| 2 | 2.0 | 5.0 | — | rt | 29 |
| 3 | 2.0 | 5.0 | 0.1 TFA | rt | 27 |
| 4 | 4.0 | 5.0 | — | rt | 49 |
| 5 | 6.0 | 5.0 | — | rt | 79 |
| 6 | 6.0 | 7.0 | — | rt | 81 |
| 7 | 6.0 | 3.0 | — | rt | 75 |
| 8 | 2.0 | 3.0 | — | 50 | 61 |
| 9 | 4.0 | 5.0 | — | 50 | 62 |
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| 11 | 6.0 | 5.0 | — | 40 | 26 |
Yields determined by 19F NMR using fluorobenzene as an internal standard.
MeCN not dry.
Substrate scope of ortho-substituted aryl-IF2 compounds. Yields were determined by 19F NMR using either fluorobenzene or benzotrifluoride as an internal standard and verified by analysis of the material balance
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Comparing properties of isomers 2, 22, and 23via DFT calculations
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| 2.13 Å | 2.01 Å | –0.248 | 1.419 | –0.627 | 86° | 172° | 40° |
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| 2.13 Å | 2.02 Å | –0.251 | 1.409 | –0.628 | 87° | 174° | 0° |
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| 2.13 Å | 2.03 Å | –0.300 | 1.502 | –0.649 | 87° | 175° | 0° |
Calculations peformed at wB97xD/cc-pvdz, with a cc-pvdz-PP basis set used for the iodine atom. C refers to ipso carbon atom and F refers to fluorine atom bound to iodine, unless otherwise specified.
Dihedral angle of Cortho–Cipso–I–F.
Average between 2.00 and 2.02 (not equal bond lengths).
Average between –0.621 and –0.633.
Average between 85° and 87°.
F atom proximal to substituent (dihedral angle is 38° for distal F).
Structure is nearly symmetric about F–I–F (mirror plane).
Structure is symmetric about F–I–F (mirror plane).
Fig. 2(Top panel) Probe molecules used to investigate rotation of IF2 moiety about C–I bond via VT-NMR. (Bottom panel) Highlighting design features of probe molecule 21.
Fig. 3Stacked 19F NMR spectra of the IF2 signal in probe molecule 21 over a range of temperatures from 298 K to 168 K. A zoomed-in spectrum is displayed for the coalescence temperature (TC) at 228 K.
Fig. 4Isodesmic relationship at wB97xD/cc-pvdz (cc-pvdz-PP for the iodine atom).
Fig. 5Crystal structure of compound 21 determined from single-crystal X-ray diffraction (displacement ellipsoids depicted at 50% probability level).
Substrate scope of meta- and para-substituted aryl-IF4 compounds
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Yields determined by 19F NMR using fluorobenzene or benzotrifluoride as an internal standard.
Fig. 6Crystal structure of compound 26 determined from single-crystal X-ray diffraction (displacement ellipsoids depicted at 50% probability level).
Fig. 7Extended application to the synthesis of an ortho-substituted I(v) compound (37) as an exception to the rule. Yield determined by 19F NMR.
Fig. 8Crystal structure of compound 37 determined from single-crystal X-ray diffraction (displacement ellipsoids depicted at 50% probability level, only one of two asymmetric moieties from asymmetric unit shown).