4.8 Article

Bioinspired Fabrication of Hierarchically Structured, pH-Tunable Photonic Crystals with Unique Transition

Journal

ACS NANO
Volume 7, Issue 6, Pages 4911-4918

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/nn400090j

Keywords

biological templates; photonic crystals; polymerization; pH-tunable; functional polymer

Funding

  1. Morgan Crucible Company
  2. National Science Foundation of China [51171110, 51072117]
  3. National Basic Research Program of China (973 Program) [2012CB619600, 2011CB922200, 20120073130001]
  4. Shanghai Science and Technology Committee [0JC1407600]

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We herein report a new class of photonic crystals with hierarchical structures, which are of color tunability over pH. The materials were fabricated through the deposition of polymethylacrylic acid (PMAA) onto a Morph butterfly wing template by using a surface bonding and polymerization route. The amine groups of chitosan in Morpho butterfly wings provide reaction sites for the MM monomer, resulting in hydrogen bonding between the template and MM. Subsequent polymerization results in PMAA layers coating homogenously on the hierarchical photonic structures of the biotemplate. The pH-induced color change was detected by reflectance spectra as well as optical observation. A distinct U transition with pH was observed, demonstrating PMAA content-dependent properties. The appearance of the unique U transition results from electrostatic interaction between the -NH3+ of chitosan and the -COO- groups of PMAA formed, leading to a special blue-shifted point at the pH value of the U transition, and the ionization of the two functional groups in the alkali and acid environment separately, resulting in a red shift. This work sets up a strategy for the design and fabrication of tunable photonic crystals with hierarchical structures, which provides a route for combining functional polymers with biotemplates for wide potential use In many fields.

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