Controlled Molecular Arrangement of Cinnamic Acid in Layered Double Hydroxide through pi-pi Interaction for Controlled Releaseopen access
- Authors
- Kim, Taeho; Paek, Seung-Min; Wang, Kang-Kyun; Park, Jin Kuen; Salles, Fabrice; Oh, Jae-Min
- Issue Date
- Apr-2024
- Publisher
- Multidisciplinary Digital Publishing Institute (MDPI)
- Keywords
- cinnamic acid; intermolecular interaction; layered double hydroxide; molecular arrangement; phenolic acid; release; π-π interaction
- Citation
- International Journal of Molecular Sciences, v.25, no.8, pp 1 - 15
- Pages
- 15
- Indexed
- SCIE
SCOPUS
- Journal Title
- International Journal of Molecular Sciences
- Volume
- 25
- Number
- 8
- Start Page
- 1
- End Page
- 15
- URI
- https://scholarworks.dongguk.edu/handle/sw.dongguk/26030
- DOI
- 10.3390/ijms25084506
- ISSN
- 1661-6596
1422-0067
- Abstract
- Cinnamic acid (CA) was successfully incorporated into Zn-Al layered double hydroxide (LDH) through coprecipitation. The CA moiety was stabilized in the interlayer space through not only electrostatic interaction but also intermolecular π-π interaction. It was noteworthy that the CA arrangement was fairly independent of the charge density of LDH, showing the important role of the layer–CA and CA-CA interactions in molecular stabilization. Computer simulations using the Monte Carlo method as well as analytical approaches including infrared, UV-vis spectroscopy, and differential scanning calorimetry showed the existence of intermolecular interaction. In order to reinforce molecular stabilization, a neutral derivative of CA, cinnamaldehyde (CAD), was additionally incorporated into LDH. It was clearly shown that CAD played a role as a π-π interaction mediator to enhance the stabilization of CA. The time-dependent release of CA from LDH was first governed by the layer charge density of LDH; however, the existence of CAD provided additional stabilization to the CA arrangement to slow down the release kinetics. © 2024 by the authors.
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Collections - College of Engineering > Department of Energy and Materials Engineering > 1. Journal Articles

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