Journal Article

·2025 OPEN ACCESS

Synthesis of PVA-based macromolecular photoinitiators through esterification with TXOCH₂COOH and cysteine, and investigation of their photophysical properties: in situ fabrication of flexible nanocomposite films

Melisa Konar YTU , Kazuki Nakamura , Nergis Arsu YTU

Frontiers in Materials

Abstract

2-(Carboxymethoxy) thioxanthone (TX-OCH₂COOH), a thioxanthone derivative, was utilized for the esterification of polyvinyl alcohol (PVA) to synthesize a macromolecular photoinitiator, both in the absence and presence of Cysteine (Cys). The covalent attachment of the thioxanthone (TX) group to PVA through esterification enabled the exploration of the photophysical properties of the resulting macromolecular photoinitiators (TXOCH₂COO-PVA and TXOCH₂COO-PVA-Cys) via UV-Vis and fluorescence studies. UV-Vis absorption spectrum of TXOCH₂COO-PVA confirmed the covalent bonding of TX, marked by a characteristic absorption peak at 397 nm corresponding to the thioxanthone chromophore. Fluorescence lifetimes were recorded as TXOCH₂COO-PVA was cast into a mold and air dried, resulting in a flexible form of PVA esterified with TXOCH₂COOH. In-situ synthesis of both silver and selenium nanoparticles was carried out using both TXOCH₂COO-PVA and TXOCH₂COO-PVA-Cys macromolecular initiators, successfully yielding nanocomposite flexible polymeric films.

Keywords

Nanocomposite In situ Fabrication Macromolecule Materials science Photopolymer Chemical engineering Polymer chemistry Nanotechnology Polymer Chemistry Organic chemistry Monomer Composite material

Subject Areas

Photopolymerization techniques and applications ·Organic Chemistry ·Physical Sciences
Additive Manufacturing and 3D Printing Technologies ·Automotive Engineering ·Physical Sciences
Advanced Polymer Synthesis and Characterization ·Organic Chemistry ·Physical Sciences

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