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Stabilization of antioxidant gallate in layered double hydroxide by exfoliation and reassembling reaction

Title
Stabilization of antioxidant gallate in layered double hydroxide by exfoliation and reassembling reaction
Authors
Ansy K.M.Lee J.-H.Piao H.Choi G.Choy J.-H.
Ewha Authors
최진호최고은
SCOPUS Author ID
최진호scopus; 최고은scopus
Issue Date
2018
Journal Title
Solid State Sciences
ISSN
1293-2558JCR Link
Citation
Solid State Sciences vol. 80, pp. 65 - 71
Keywords
Antioxidant activityControlled releaseGallic acidLayered double hydroxidePhotostability
Publisher
Elsevier Masson SAS
Indexed
SCIE; SCOPUS WOS scopus
Document Type
Article
Abstract
As for the stabilization of chemically sensitive bioactive molecule in this study, gallic acid (GA) with antioxidant property was intercalated into interlayer space of layered double hydroxide (LDH), which was realized by exfoliation and reassembling reaction. At first, the pristine nitrate-type Zn2Al-LDH in solid state was synthesized via co-precipitation followed by the hydrothermal treatment at 80 °C for 6 h, and then exfoliated in formamide to form a colloidal solution of exfoliated LDH nanosheets, and finally reassembled in the presence of GA to prepare GA intercalated LDH (GA-LDH) desired, where the pH was adjusted to 8.0 in order to deprotonate GA to form gallate anion. According to the XRD analysis, GA-LDH showed well-developed (00l) diffraction peaks with a basal spacing of 1.15 nm, which was estimated to be larger than that of the pristine LDH (0.88 nm), indicating that gallate molecules were incorporated into LDH layers with perpendicular orientation. From the FT-IR spectra it was found that gallic acid was completely deprotonated into gallate, and stabilized in between LDH lattices via electrostatic interaction. The content of GA in GA-LDH was determined to be around 23 wt% by UV–vis spectroscopic study, which was also confirmed by HPLC analysis. According to the in-vitro release of GA out of GA-LDH in PBS solution (pH 7.4) at 4 °C, GA was sustainably released from GA-LDH nanohybrid up to 86% within 72 h. The antioxidant property of GA-LDH was almost the same with that of intact GA which was examined by DPPH. The photostability of GA-LDH under UV light irradiation was immensely enhanced compared to intact GA. It is, therefore, concluded that the present GA-LDH nanohybrid can be considered as an excellent antioxidant material with high chemical- and photo-stabilities, and controlled release property. © 2018 Elsevier Masson SAS
DOI
10.1016/j.solidstatesciences.2018.04.001
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자연과학대학 > 화학·나노과학전공 > Journal papers
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