Functional Polymer Material with Efficient Optical Tunability

Author:

Kumar Rajan12ORCID,Kumar Nishkarsh3,Chandel Shubham3,Tiwari Akash3,Bag Arijit4,Kumar Ghorai Pradip4ORCID,Ghosh Nirmalya3ORCID,Shunmugam Raja1ORCID

Affiliation:

1. Polymer Research Centre (PRC) Centre for Advanced Functional Materials (CAFM) Department of Chemical Sciences Indian Institute of Science Education and Research Kolkata (IISER K) Mohanpur West Bengal 741246 India

2. Centre for Nanotechnology Indian Institute of Technology Guwahati (IIT Guwahati) Guwahati Assam 781039 India

3. Department of Physical Sciences Indian Institute of Science Education and Research Kolkata (IISER K) Mohanpur West Bengal 741246 India

4. Department of Chemical Sciences Indian Institute of Science Education and Research Kolkata (IISER K) Mohanpur West Bengal 741246 India

Abstract

AbstractThe solvent dependent investigation for the bathochromic emission has an extensive report whereas the report on solvent independent material is limited. With approach for invention of photoluminescent material, the hydrothiolation was invoked for the growth of thermally clicked energy tuneable crosslinked photoluminescent polymeric materials. The observed CIE co‐ordinates for the crosslinked polymers were Poly‐BnNpAll (0.31, 0.48) and Poly‐BnNpAlk (0.34, 0.51). The respective quantum efficiency (Φ) for Poly‐BnNpAll and Poly‐BnNpAlk were 9.73 % and 6.14 %. The energy tunability and optical responses were validated through DFT calculations and fluorescence Mueller matrix (FLMM) analysis. From FLMM, the optical parameters ‐ fluorescence diattenuation and fluorescence polarizance revealed the excited molecular orientation is more organized relative to ground state. Such materials have scope for application as promoter during photocatalysis, chemosensing, etc.

Funder

Indian Institute of Technology Guwahati

Publisher

Wiley

Subject

General Chemistry

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