Lin Jui-Teng, Lalevee Jacques, Liu Hsia-Wei
New Photon Corp., 10F, No. 55, Sect. 3, Xinbei Blvd, Xinzhuang, New Taipei City 242062, Taiwan.
CNRS, IS2M UMR 7361, Université de Haute-Alsace, F-68100 Mulhouse, France.
Polymers (Basel). 2021 Nov 20;13(22):4013. doi: 10.3390/polym13224013.
This article presents, for the first time, the kinetics and the general features of a photopolymerization system (under visible light), copper-complex/Iodonium/triethylamine/gold-chloride (orA/B/N/G), with initial concentrations of A, B, N and G, based on the proposed mechanism of Tar et al. Analytic formulas were developed to explore the new features, including: (i) both free radical photopolymerization (FRP) efficacy and the production of nanogold (NG), which are proportional to the relative concentration ratios of (A + B + N)/G and may be optimized for maximum efficacy; (ii) the two competing procedures of NG production and the efficacy of FRP, which can be tailored for an optimal system with nanogold in the polymer matrix; (iii) the FRP efficacy, which is contributed by three components given by the excited state of copper complex (T), and the radicals (R and S) produced by iodonium and amine, respectively; (iv) NG production, which is contributed by the coupling of T and radical (S) with gold ion; and (v) NG production, which has a transient state proportional to the light intensity and the concentration ratio A/G) + (N/(K'M), but also a steady-state independent of the light intensity.
本文首次基于塔尔等人提出的机理,给出了光聚合体系(可见光下)铜配合物/碘鎓/三乙胺/氯化金(或A/B/N/G)的动力学及一般特征,其中A、B、N和G具有初始浓度。推导了解析公式以探究新特征,包括:(i)自由基光聚合(FRP)效率和纳米金(NG)的生成,二者均与(A + B + N)/G的相对浓度比成正比,且可针对最大效率进行优化;(ii)NG生成和FRP效率这两个相互竞争的过程,可为聚合物基质中含纳米金的最佳体系进行调整;(iii)FRP效率由铜配合物激发态(T)以及碘鎓和胺分别产生的自由基(R和S)这三个组分贡献;(iv)NG生成由T和自由基(S)与金离子的偶联贡献;(v)NG生成具有与光强和浓度比A/G)+(N/(K'M)成正比的瞬态,同时也有与光强无关的稳态。