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Near Infrared Light Induced Radical Polymerization in Water.


ABSTRACT: We introduce a gold nanorod (AuNR) driven methodology to induce free radical polymerization in water with near infrared light (800 nm). The process exploits photothermal conversion in AuNR and subsequent heat transfer to a radical initiator (here azobisisobutyronitrile) for primary radical generation. A broad range of reaction conditions were investigated, demonstrating control over molecular weight and reaction conversion of dimethylacrylamide polymers, using nuclear magnetic resonance spectroscopy. We underpin our experimental data with finite element simulation of the spatio-temporal temperature profile surrounding the AuNR directly after femtosecond laser pulse excitation. Critically, we evidence that polymerization can be induced through biological tissues given the enhanced penetration depth of the near infrared light. We submit that the presented initiation mechanism in aqueous systems holds promise for radical polymerization in biological environments, including cells.

SUBMITTER: Neidinger P 

PROVIDER: S-EPMC9826492 | biostudies-literature | 2022 Oct

REPOSITORIES: biostudies-literature

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Near Infrared Light Induced Radical Polymerization in Water.

Neidinger Philipp P   Davis Joshua J   Voll Dominik D   Jaatinen Esa A EA   Walden Sarah L SL   Unterreiner Andreas N AN   Barner-Kowollik Christopher C  

Angewandte Chemie (International ed. in English) 20220906 42


We introduce a gold nanorod (AuNR) driven methodology to induce free radical polymerization in water with near infrared light (800 nm). The process exploits photothermal conversion in AuNR and subsequent heat transfer to a radical initiator (here azobisisobutyronitrile) for primary radical generation. A broad range of reaction conditions were investigated, demonstrating control over molecular weight and reaction conversion of dimethylacrylamide polymers, using nuclear magnetic resonance spectros  ...[more]

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