Ionic bonds share fundamental electrostatic characteristics with strong intermolecular forces while maintaining directional electron transfer.
Ionic bonds share fundamental electrostatic characteristics with strong intermolecular forces and can exhibit directional properties under specific structural controls.
The claim states that ionic bonds share fundamental electrostatic characteristics with strong intermolecular forces while maintaining directional electron transfer (or interactions). Paper [8] discusses ionic and intermolecular bonds within overlapping material design frameworks driven by electrostatic features, while Paper [7] directly addresses the directional control of ionic bonding, showing that ionic interactions can exhibit a directed topology similar to molecular/intermolecular paradigms. The retrieved literature supports these shared characteristics and directional control mechanisms.
Kangren Kong, Jie Wang, Pilan Zhang, Xiaoming Ma, Yifei Xu, Zaiqiang Ma, Yanhua Sang, Zhisen Zhang, Tianren Liu, Chuanhong Jin, Zhaoming Liu, R. Tang. Linear Calcium Carbonate Chains by Directional Control of Ionic Bonding.. 2024. https://doi.org/10.1021/acs.jpclett.4c00069
Paper [7] demonstrates that ionic bonding can exhibit directional characteristics through dipole orientation, resulting in linear ionic chains akin to molecular compounds.
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Upamanyu Ray, Zhenqian Pang, Teng Li. Programming material properties by tuning intermolecular bonding. 2022. https://doi.org/10.1063/5.0123058
Paper [8] groups ionic bonds and intermolecular bonds together as foundational interactions that govern material properties through electrostatic characteristics.
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