Matches in SemOpenAlex for { <https://semopenalex.org/work/W4311117577> ?p ?o ?g. }
- W4311117577 abstract "Conventional strategies for materials design have long been used by leveraging primary bonding, such as covalent, ionic, and metallic bonds, between constituent atoms. However, bond energy required to break primary bonds is high. Therefore, high temperatures and enormous energy consumption are often required in processing and manufacturing such materials. On the contrary, intermolecular bonds (hydrogen bonds, van der Waals forces, electrostatic interactions, imine bonds, etc.) formed between different molecules and functional groups are relatively weaker than primary bonds. They, thus, require less energy to break and reform. Moreover, intermolecular bonds can form at considerably longer bond lengths between two groups with no constraint on a specific bond angle between them, a feature that primary bonds lack. These features motivate unconventional strategies for the material design by tuning the intermolecular bonding between constituent atoms or groups to achieve superior physical properties. This paper reviews recent development in such strategies that utilize intermolecular bonding and analyzes how such design strategies lead to enhanced thermal stability and mechanical properties of the resulting materials. The applications of the materials designed and fabricated by tuning the intermolecular bonding are also summarized, along with major challenges that remain and future perspectives that call for further attention to maximize the potential of programming material properties by tuning intermolecular bonding." @default.
- W4311117577 created "2022-12-23" @default.
- W4311117577 creator A5000527480 @default.
- W4311117577 creator A5029431379 @default.
- W4311117577 creator A5038295698 @default.
- W4311117577 date "2022-12-02" @default.
- W4311117577 modified "2023-10-16" @default.
- W4311117577 title "Programming material properties by tuning intermolecular bonding" @default.
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