The many flavours of halogen bonds – message from experimental electron density and Raman spectroscopy

Wang, Ruimin;George, Janine;Potts, Shannon Kimberly;Kremer, Marius;Englert, Ulli;et.al.
(2019) Acta Crystallographica Section C Structural Chemistry — Vol. 75, n° 9, p. 1190-1201 (2019)

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Authors
  • Wang, RuiminInstitute of Inorganic Chemistry, RWTH Aachen University, Landoltweg 1, Aachen 52056, Germany
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  • George, Janineorcid-logoUCLouvain
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  • Potts, Shannon KimberlyInstitute of Inorganic Chemistry, RWTH Aachen University, Landoltweg 1, Aachen 52056, Germany
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  • Kremer, MariusInstitute of Inorganic Chemistry, RWTH Aachen University, Landoltweg 1, Aachen 52056, Germany
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  • Englert, Ulliorcid-logoInstitute of Inorganic Chemistry, RWTH Aachen University, Landoltweg 1, Aachen 52056, Germany
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Abstract
Experimental electron-density studies based on high-resolution diffraction experiments allow halogen bonds between heavy halogens to be classified. The topological properties of the electron density in Cl...Cl contacts vary smoothly as a function of the inter­action distance. The situation is less straightforward for halogen bonds between iodine and small electronegative nucleophiles, such as nitro­gen or oxygen, where the electron density in the bond critical point does not simply increase for shorter distances. The number of successful charge–density studies involving iodine is small, but at least individual examples for three cases have been observed. (a) Very short halogen bonds between electron-rich nucleophiles and heavy halogen atoms resemble three-centre–four-electron bonds, with a rather symmetric heavy halogen and without an appreciable σ hole. (b) For a narrow inter­mediate range of halogen bonds, the asymmetric electronic situation for the heavy halogen with a pronounced σ hole leads to rather low electron density in the (3,−1) critical point of the halogen bond; the properties of this bond critical point cannot fully describe the nature of the associated inter­action. (c) For longer and presumably weaker contacts, the electron density in the halogen bond critical point is only to a minor extent reduced by the presence of the σ hole and hence may be higher than in the aforementioned case. In addition to the electron density and its derived properties, the halogen–carbon bond distance opposite to the σ hole and the Raman frequency for the associated vibration emerge as alternative criteria to gauge the halogen-bond strength. We find exceptionally long C—I distances for tetra­fluoro­diiodo­benzene molecules in cocrystals with short halogen bonds and a significant red shift for their Raman vibrations.
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Citations

Wang, R., George, J., Potts, S. K., Kremer, M., Dronskowski, R., & Englert, U. (2019). The many flavours of halogen bonds – message from experimental electron density and Raman spectroscopy. Acta Crystallographica Section C Structural Chemistry, 75(9), 1190-1201. https://doi.org/10.1107/s205322961901132x (Original work published 2019)