Related Experiment Video
Updated: Jun 12, 2026

From Molecules to Materials: Engineering New Ionic Liquid Crystals Through Halogen Bonding
Published on: March 24, 2018
Insight into the lithium/hydrogen bonding in (CH2)2X...LiY/HY (X: C=CH2, O, S; Y=F, Cl, Br) complexes
Xiaoyan Li1, Yanli Zeng, Xueying Zhang
1Institute of Computational Quantum Chemistry, College of Chemistry and Material Science, Hebei Normal University, Shijiazhuang 050016, China.
Abstract:
The nature of the lithium/hydrogen bonding between (CH(2))(2)X(X: C=CH(2), O, S) and LiY/HY(Y=F, Cl, Br) have been theoretically investigated at MP2/6-311++G (d, p) level, using Bader's "atoms in molecules (AIM)" theory and Weinhold's "natural bond orbital (NBO)" methodology. The molecule formation density differences (MFDD) of the titled complexes are analyzed. Two kinds of geometries of the lithium/hydrogen bonded complexes are compared. As a whole, the nature of lithium bond and hydrogen bond are different. For the same electron donor and the same acceptor, lithium bond is stronger than hydrogen bond. For the same electron acceptor and different kind of donors, the interaction energies follows the n-type> π-type > pseudo-π-type order. For the same (CH(2))(2)X, the interaction energy increases in the sequence of Y=F, Cl and Br for lithium bond systems while it decreases for hydrogen bond systems. Electron transfer plays an important role in the formation of lithium bond systems while it is less important in the hydrogen bond systems.
Related Concept Videos
Covalent Bonding and Lewis Structures
Ionic Bonding and Electron Transfer
Lewis Structures of Molecular Compounds and Polyatomic Ions
Hybridization of Atomic Orbitals I
Lewis Structures and Formal Charges
Molecular Orbital Theory II

