Twin hydrogen bonds with phosphine oxide: anticooperativity effects caused by competing proton donors
Двойные водородные связи с оксидом фосфина: эффекты антикооперативности, вызванные конкурирующими донорами протонов
2024-12-09
SCID: 54.1/ub2scwt8
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P=O stretching frequencyanticooperativity effectsphosphorus chemical shifttrimethyl phosphine oxidetwin hydrogen bonds
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Abstract (AI)
In this computational work we study complexes with two equivalent intermolecular hydrogen bonds formed between trimethyl phosphine oxide and two identical proton donors ("twin" hydrogen bonds) for a set of 70 proton donor molecules. The changes in the phosphorus chemical shift and stretching frequency of the PO group upon complexation correlate quite well with the total strength of two hydrogen bonds. A set of explicit numerical dependences is proposed for assessing interatomic distances and hydrogen bond strengths from spectral data. Comparison with the results obtained for analogous previously studied 1 : 1 complexes allowed us to analyze in detail anticooperativity effects on the geometry, energy and spectral parameters. Two hydrogen bonds compete for the PO acceptor group and their mutual weakening increases nonlinearly with the strengthening of the complex, reaching approximately 25% in energy (which corresponds to 0.1 Å lengthening for short strong H-bonds), which is clearly seen in NMR and IR spectra and correlates well with the changes in the spectral parameters.
Key Findings
1
Anticooperativity leads to about 25% weakening in energy (and approximately 0.1 Å lengthening for short strong H-bonds), observable in NMR and IR spectra and correlated with spectral parameter changes.
2
Changes in the phosphorus chemical shift and P=O stretching frequency upon complexation correlate well with the total strength of the two hydrogen bonds.
3
Comparison with prior 1:1 complexes shows anticooperativity: the two H-bonds compete for the PO acceptor, mutually weakening each other nonlinearly as complex strength increases.
4
Computational study of 70 proton donor molecules forming twin intermolecular hydrogen bonds with trimethyl phosphine oxide (PO) was performed.
5
Explicit numerical relationships are proposed to estimate interatomic distances and hydrogen bond strengths from spectral data (NMR and IR).
Research Object
Intermolecular complexes of trimethyl phosphine oxide with two identical proton donors forming twin hydrogen bonds
Research Subject
Anticooperativity effects between the two competing hydrogen bonds on geometry, interaction energy, and spectral parameters (phosphorus chemical shift and P=O stretching frequency), and quantitative relationships between spectral changes and H‑bond strengths/distances
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2024-12-09
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