Issue 52, 2017, Issue in Progress

A biomimetic ion-crosslinked layered double hydroxide/alginate hybrid film

Abstract

Natural nacre has an ordered layered arrangement of calcium carbonate platelets and ion-crosslinked protein, which enable it to achieve outstanding mechanical properties. Inspired by the relationship between structure and mechanical properties of natural nacre, we fabricate a Ca2+-crosslinked layered double hydroxide/alginate (LDH/ALG-Ca2+) hybrid film through filtration of Ca2+-crosslinked LDH/ALG hybrid building blocks. The LDH nanoplatelets and alginate were alternately stacked giving an ordered layered structure, in which alginate was crosslinked by Ca2+. The effect of LDH content and Ca2+ crosslinking on the microstructure and interfacial interaction of LDH/ALG-Ca2+ hybrid films was studied systematically. The optimized nacre-like hybrid film exhibits good flexibility and high strength (194 MPa), superior to natural nacre. The ordered layered structure and small diameter of LDH give the hybrid film a high transparency of 74–94% in the visible light wavelength range.

Graphical abstract: A biomimetic ion-crosslinked layered double hydroxide/alginate hybrid film

Supplementary files

Article information

Article type
Paper
Submitted
24 Apr 2017
Accepted
20 Jun 2017
First published
27 Jun 2017
This article is Open Access
Creative Commons BY-NC license

RSC Adv., 2017,7, 32601-32606

A biomimetic ion-crosslinked layered double hydroxide/alginate hybrid film

B. Liang, J. Wang, Y. Shu, P. Yin and L. Guo, RSC Adv., 2017, 7, 32601 DOI: 10.1039/C7RA04577H

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