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Antibacterial activity and enhanced release behavior of these LDHs have been studied and confirmed.
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TEM was used to observe the dispersed behavior of the LDHs nanolayers, and the LDHs nanolayers were exfoliated and well dispersed in these nanocomposites.
Herein, we investigated the internalization behavior of the LDH-DNA bioconjugates via a microscopic approach and analyzed the internalization pathway by dissipative particle dynamics (DPD) simulations.
Catalytic behavior of the LDH samples was examined in the liquid phase aldol condensation of furfural and acetone at 20 and 60 °C.
The electrochemical behaviors of the LDH were investigated by Cyclic Voltammetry, Electrochemical Impedance Spectroscopy and Galvanostatic Charge/discharge with Potential Limitation measurements.
However, the synergistic effect between different host metal ions on the electrochemical behavior of LDHs is rarely studied.
Neither of these LDHs shows efficacy with poly ethylene-co-butyl acrylate), which indicates a selective interaction between the LDH and the various poly ethylene-co-butyl
The unusual packing of the monounsaturated oleate anions in the gallery of these LDHs facilitates the dispersion of these nanomaterials.
The presence of ZnO reflections in the patterns of these LDHs indicated the incomplete reconstruction of LDH under rehydration of mixed double oxides in an aqueous solution of DS (Fig. 2a).
Fig. 4 Release behavior of SEC-LDH at a pH 3, b pH 5 in aqueous medium.
Fig. 5 Kinetic behavior of the Sec-LDH according to the a zeroth order model, b Korsmeyer Peppas model.
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behavior of these particles
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