Photoactive hyperbranched poly(azo‐ester) urethanes as fluorescent staining agent for plant cells

Author:

Gopalakrishnan Arumugam1,Nandhagopal Manivannan2,Narayanasamy Mathivanan3,Sivakumar Chickiyan4,Vanjinathan Mahalingam1,Nasar A. Sultan5ORCID

Affiliation:

1. PG and Research Department of Chemistry Dwaraka Doss Goverdhan Doss Vaishnav College Chennai India

2. Department of Microbiology, Saveetha Medical College & Hospital Saveetha Institute of Medical and Technical Sciences (SIMATS) Chennai India

3. Bio‐Control and Microbial Metabolites Lab, Centre for Advanced Studies in Botany University of Madras Chennai India

4. Department of Chemistry, Faculty of Engineering Karpagam Academy of Higher Education Coimbatore India

5. Department of Polymer Science University of Madras Chennai India

Abstract

AbstractA new AB2‐type blocked isocyanate monomer containing azo‐ester linkages and N,N′‐diethanol amine groups was successfully synthesized. Deblocking of this monomer in DMF resulted corresponding hyperbranched poly(azo‐ester)urethanes (HBPAEUs). These polymers were characterized by UV–visible spectroscopy, GPC, TGA, and DSC methods. The molecular weights (Mw) of the polymers were in the range of 5500–25,500 g/mol. The effect of reaction temperature on Mw was found significant. The polymers were found thermally stable up to 240 °C and showed Tg between 150 and 153 °C. These polymers absorbed UV light at 407 nm in THF solvent and also exhibited high absorption coefficients. The photo induced trans to cis isomerization of HBPAEU in THF was also studied and found λmax of cis form of the polymer was shifted to 526 nm, which suggested that the stability of this isomer was good. And, the polymer showed aggregation induced enhanced emission. In addition, the monomer and HBPAEU were found to exhibit maximal antibacterial activity against various Gram‐positive and Gram‐negative bacteria. In‐vitro bio‐imaging studies of this monomer and polymer were carried out in onion epidermal and fungal cells and the results revealed that the polymer was more efficient for staining and imaging plant cells.

Publisher

Wiley

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