Neutron Diffraction and Spectroscopic Studies of Intramolecular Tetrel Bonds in Three Fluorinated Zinc Complexes:
Norman Lu1,2, Gurumallappa Gurumallappa1,2, Pin-Yu Liu1
1Institute of Organic and Polymeric Materials, National Taipei University of Technology, Taipei 106, Taiwan (ROC).
Abstract:
Three fluorinated Zn complexes were synthesized and characterized. Their single crystals were grown and studied via X-ray and neutron diffraction methods. These fluorinated metal complexes tend to form two special noncovalent interactions: an intramolecular tetrel bond (TB) and an intramolecular blueshifting hydrogen bond (HB). In 4FH-ZnCl2 [2,6-(HCF2CF2CH2OCH2)2-py-ZnCl2], an intramolecular TB induces significant elongation of a C-H bond in a methylene group, H1A-C1-H1B, to 1.108(2) Å, whereas the intramolecular C1-H1A···F2 blueshifting HB shortens the C1-H1A bond to 1.092(1) Å. Thus, C1-H1B is longer than C1-H1A by 16(2) mÅ such that either one of the C1-H1 stretches becomes a methine-like stretch with a peak appearing at 3020 or 2688 cm-1. A peak corresponding to a lengthened sp3 C1-H1B bond is greatly redshifted and appears at 2688 cm-1. When this 2688 cm-1 peak is compared with its other methylene C-H peak (3020 cm-1), their C-H vibrational stretches then differ by 332 cm-1, which is likely the largest ever sp3 C-H bond stretching difference reported between two methylene C-H bonds. Additionally, two C-D bonds of deuterated 4FH-ZnCl2, which has an intramolecular C···F TB that induces very different lengths of the two C-D bonds in a D-C-D group, become a local mode, as proven by Hooke's law. Thus, Badge's rule has been extended by using both neutron and spectroscopic studies.
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