Issue 22, 2019, Issue in Progress

Layered photochromic films stacked from spiropyran-modified montmorillonite nanosheets

Abstract

Two-dimensional (2D) nanosheets are a class of fascinating host material that demonstrates a high specific surface area for the immobilization of functional molecules. Herein, we describe a layered photochromic film using montmorillonite 2D nanosheets immobilized with spiropyran units, which demonstrates a remarkable and reversible photochromic behavior. The synthesis of the layered photochromic film includes the intercalation and exfoliation of montmorillonite powders into 2D nanosheets using a spiropyran-modified surfactant and a subsequent vacuum filtration. The photochromic units of spiropyran-modified quaternary ammonium groups are immobilized on the surface of montmorillonite 2D nanosheets through an electrostatic interaction after exchanging with the native cations in montmorillonite during the intercalation and exfoliation. The photoisomerization of the spiropyran units between closed-ring spiropyran and open-ring merocyanine upon visible/UV irradiation contributes to the photochromic behavior of the layered film. The color contrast between the coloration and decoloration states of photochromic film is optimized by increasing the amount of spiropyran-modified cationic surfactant during the intercalation and exfoliation process. Our layered films with a visual photochromic behavior may promote their applications for optical data storage, optical switching and chemical sensing.

Graphical abstract: Layered photochromic films stacked from spiropyran-modified montmorillonite nanosheets

Supplementary files

Article information

Article type
Paper
Submitted
27 Feb 2019
Accepted
15 Apr 2019
First published
23 Apr 2019
This article is Open Access
Creative Commons BY-NC license

RSC Adv., 2019,9, 12325-12330

Layered photochromic films stacked from spiropyran-modified montmorillonite nanosheets

M. Gan, T. Xiao, Z. Liu and Y. Wang, RSC Adv., 2019, 9, 12325 DOI: 10.1039/C9RA01480B

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