4.7 Article

Wavelength-resolved near infra-red light induced free-radical polymerization

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POLYMER CHEMISTRY
卷 14, 期 43, 页码 4912-4917

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ROYAL SOC CHEMISTRY
DOI: 10.1039/d3py01097j

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A near infrared action plot from 620 to 950 nm for gold nanorod (AuNR) mediated free-radical polymerization is reported, probing the wavelength-by-wavelength monomer to polymer conversion with an identical number of photons at each wavelength.
Initiating polymerization processes at long wavelengths, ideally in the near-infrared (NIR) range, is critical to enable applications where shorter wavelengths may be harmful and where high penetration depths may be required. While we have recently demonstrated that gold nanorods (AuNR) function as effective photothermal converters at 800 nm to initiate free radical polymerizations, a careful wavelength-by-wavelength assessment (photochemical action plot analysis) of their effectiveness is outstanding. Herein, we provide a full NIR action plot from 620 to 950 nm, probing the wavelength-by-wavelength monomer to polymer conversion with an identical number of photons at each wavelength. While the vast majority of action plots show a red-shift relative to the absorption spectrum, we herein observe a pronounced blue-shift for the most effective conversion. A near infra-red action plot from 620 to 950 nm for gold nanorod (AuNR) mediated free-radical polymerization is reported, probing the wavelength-by-wavelength monomer to polymer conversion with an identical number of photons at each wavelength.

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