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Influence of Macromolecular Architecture on the Optical and Humidity-Sensing Properties of Poly(N,N-Dimethylacrylamide)-Based Block Copolymers.


ABSTRACT: The influence of the macromolecular architecture of block copolymers containing poly(N,N-dimethyl acrylamide) (PDMA) on the optical characteristics and sensing properties of corresponding thin films is discussed. Series of hydrophilic PDMA-based copolymers of different chemical composition and chain architecture such as triblock, star-shaped, and branched were synthesized. The copolymers were characterized using conventional spectroscopic techniques as well as methods for characterization of copolymer macromolecular characteristics in solution, namely size-exclusion chromatography and static light scattering. Thin films of the copolymers of nanometer scale thickness were deposited on silicon substrates by the spin-coating method. The refractive index and extinction coefficient of the copolymer films were calculated from the reflectance spectra by using non-linear curve fitting methods and the composition-structure-optical properties relationships were evaluated. Humidity-sensing properties of the films were studied by measuring reflectance spectra of the films at a relative humidity range from 5 to 95%RH. The implementation of the copolymer films as optical sensors of humidity is justified and discussed.

SUBMITTER: Lazarova K 

PROVIDER: S-EPMC6403531 | biostudies-literature | 2018 Jul

REPOSITORIES: biostudies-literature

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Influence of Macromolecular Architecture on the Optical and Humidity-Sensing Properties of Poly(<i>N</i>,<i>N</i>-Dimethylacrylamide)-Based Block Copolymers.

Lazarova Katerina K   Vasileva Marina M   Ivanova Sijka S   Novakov Christo C   Christova Darinka D   Babeva Tsvetanka T  

Polymers 20180713 7


The influence of the macromolecular architecture of block copolymers containing poly(<i>N</i>,<i>N</i>-dimethyl acrylamide) (PDMA) on the optical characteristics and sensing properties of corresponding thin films is discussed. Series of hydrophilic PDMA-based copolymers of different chemical composition and chain architecture such as triblock, star-shaped, and branched were synthesized. The copolymers were characterized using conventional spectroscopic techniques as well as methods for character  ...[more]

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