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Laccase‐Catalyzed Synthesis of Low‐Molecular‐Weight Lignin‐Like Oligomers and their Application as UV‐Blocking Materials
Authors:Jieyan Lim  Dr. Barindra Sana  Dr. Ranganathan Krishnan  Dr. Jayasree Seayad  Dr. Farid J. Ghadessy  Dr. Satyasankar Jana  Dr. Balamurugan Ramalingam
Affiliation:1. Organic Chemistry, Institute of Chemical and Engineering Sciences, #07-01/02 Neuros, Singapore, Singapore;2. P53 Laboratory, #06-04/05 Neuros/Immunos, Singapore, Singapore;3. Polymer Engineering & Characterization, Institute of Chemical and Engineering Sciences, 1, Jurong Island, Singapore, Singapore
Abstract:The laccase‐catalyzed oxidative polymerization of monomeric and dimeric lignin model compounds was carried out with oxygen as the oxidant in aqueous medium. The oligomers were characterized by using gel permeation chromatography (GPC) and matrix‐assisted laser desorption ionization time‐of‐flight mass spectroscopy (MALDI‐TOF MS) analysis. Oxidative polymerization led to the formation of oligomeric species with a number‐average molecular weight (Mn) that ranged from 700 to 2300 Da with a low polydispersity index. Spectroscopic analysis provided insight into the possible modes of linkages present in the oligomers, and the oligomerization is likely to proceed through the formation of C?C linkages between phenolic aromatic rings. The oligomers were found to show good UV light absorption characteristics with high molar extinction coefficient (5000–38 000 m ?1 cm?1) in the UV spectral region. The oligomers were blended independently with polyvinyl chloride (PVC) by using solution blending to evaluate the compatibility and UV protection ability of the oligomers. The UV/Vis transmittance spectra of the oligomer‐embedded PVC films indicated that these lignin‐like oligomers possessed a notable ability to block UV light. In particular, oligomers obtained from vanillyl alcohol and the dimeric lignin model were found to show good photostability in accelerated UV weathering experiments. The UV‐blocking characteristics and photostability were finally compared with the commercial low‐molecular‐weight UV stabilizer 2,4‐dihydroxybenzophenone.
Keywords:bio-derived  oligomerization  polymer additives  transmittance spectra  UV blocking
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