Literature DB >> 21666875

Poly(vinyl alcohol) Rehydratable Photonic Crystal Sensor Materials.

Michelle M Ward Muscatello1, Sanford A Asher.   

Abstract

We developed a new photonic crystal hydrogel material based on the biocompatible polymer poly (vinyl alcohol) (PVA), which can be reversibly dehydrated and rehydrated, without the use of additional fillers, while retaining the diffraction and swelling properties of polymerized crystalline colloidal arrays (PCCA). This chemically modified PVA hydrogel photonic crystal efficiently diffracts light from the embedded crystalline colloidal array. This diffraction optically reports on volume changes occurring in the hydrogel by shifts in the wavelength of the diffracted light. We fabricated a pH sensor, which demonstrates a 350 nm wavelength shift between pH values of 3.3 and 8.5. We have also fabricated a Pb(+2) sensor, in which pendant crown ether groups bind lead ions. Immobilization of the ions within the hydrogel increases the osmotic pressure due to the formation of a Donnan potential, swelling the hydrogel and shifting the observed diffraction in proportion to the concentration of bound ions. The sensing responses of rehydrated PVA pH and Pb(+2) sensors were similar to that before drying. This reversibility of rehydration enables storage of these hydrogel photonic crystal sensors in the dry state, which makes them much more useful for commercial applications.

Entities:  

Year:  2008        PMID: 21666875      PMCID: PMC3111221          DOI: 10.1002/adfm.200701210

Source DB:  PubMed          Journal:  Adv Funct Mater        ISSN: 1616-301X            Impact factor:   18.808


  32 in total

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6.  Photonic crystal aqueous metal cation sensing materials.

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2.  Dependence of Photonic Crystal Nanocomposite Elasticity on Crystalline Colloidal Array Particle Size.

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3.  Photonic crystal borax competitive binding carbohydrate sensing motif.

Authors:  Qingzhou Cui; Michelle M Ward Muscatello; Sanford A Asher
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  5 in total

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