Visualizing Penetration of Fluorescent Dye through Polymer Coatings

Author:

Chaudhuri Krishnaroop1ORCID,Medhi Riddhiman2ORCID,Zhang Zhenglin3ORCID,Cai Zhuoyun4ORCID,Ober Christopher K.3ORCID,Pham Jonathan T.1ORCID

Affiliation:

1. Department of Chemical and Environmental Engineering University of Cincinnati Cincinnati OH 45221 USA

2. Chemistry Department University of Scranton Scranton PA 18510 USA

3. Department of Materials Science and Engineering Cornell University Ithaca NY 14853 USA

4. Department of Chemical and Materials Engineering University of Kentucky Lexington KY 40506 USA

Abstract

AbstractUnderstanding how small molecules penetrate and contaminate polymer films is of vital importance for developing protective coatings for a wide range of applications. To this end, rhodamine B fluorescent dye is visualized diffusing through polystyrene‐polydimethylsiloxane block copolymer (BCP) coatings using confocal microscopy. The intensity of dye inside the coatings grows and decays non‐monotonically, which is likely due to a combination of dye molecule transport occurring concurrently in different directions. An empirical fitting equation allows for comparing the contamination rates between copolymers, demonstrating that dye penetration is related to the chemical makeup and configuration of the BCPs. This work shows that confocal microscopy can be a useful tool to visualize the transport of a fluorophore in space and time through a coating.

Funder

U.S. Naval Research Laboratory

Defense Threat Reduction Agency

Publisher

Wiley

Subject

Materials Chemistry,Polymers and Plastics,Organic Chemistry

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