carminic acid和carminic lake在溶液和涂膜中光老化过程中的作用

G. Favaro, C. Miliani, A. Romani, M. Vagnini
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引用次数: 27

摘要

本文研究了红色着色剂胭脂红酸及其金属配合物胭脂红湖在溶液和涂漆表面上的吸收光谱、荧光光谱、发射量子产率和寿命。研究了在水彩画中常用的粘合剂(阿拉伯树胶)存在和不存在的情况下,胭脂红酸和湖泊在溶液中的加速光老化,同时对水彩画纸进行了几个月的自然老化。研究了水中卡明酸与pH的关系,发现吸收光谱随pH值的变化而变化。通过分光光度法和荧光滴定法测定了4个酸碱解离步骤,并测定了相应的pKs。荧光量子产率(在10−2-10−4范围内)和寿命(在亚纳秒时间尺度上,90-1000 ps)明显依赖于培养基的pH。利用福斯特循环计算激发态pK*s。在涉及-COOH基团的第一步去质子化反应(ΔpK* =−1.9)时,酸度下降,但涉及三个酚羟基的连续去质子化反应(ΔpK* = 0.6, 2.0和0.2)时酸度略有增加。老化实验结果表明,在辐照过程中,卡己酸和湖水都发生了漂白。虽然粘合剂可以防止湖泊褪色,但它会破坏胭脂红酸的稳定性。这些发现是根据染料与溶剂和基质的相互作用来讨论的。
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Role of protolytic interactions in photo-aging processes of carminic acid and carminic lake in solution and painted layers
In this paper absorption and fluorescence spectra and emission quantum yields and lifetimes of the red colorants, carminic acid and its metal complex, carminic lake, were studied in solution and on painted surfaces. Accelerated photo-aging of carminic acid and lake was investigated in solution, in the presence and absence of a binder (arabic gum) commonly used in water-colour painting, while natural ageing was followed for several months on water-colour painted paper. The study of carminic acid in water as a function of pH showed that the absorption spectrum changes with pH. Four acid–base dissociation steps were detected and the corresponding pKs were determined from spectrophotometric and fluorimetric titrations. The fluorescence quantum yields (in the 10−2–10−4 range) and the lifetimes (on the sub-nanosecond timescale, 90–1000 ps) were markedly dependent on the pH of the medium. Excited state pK*s were calculated by means of the Forster cycle. The acidity decreased upon excitation for the first deprotonation step involving the –COOH group (ΔpK* = −1.9), but increased slightly for the successive deprotonation steps involving three phenolic hydroxy groups (ΔpK* = 0.6, 2.0 and 0.2, respectively). The results obtained from the aging experiments indicate that both carminic acid and lake are bleached during irradiation. While the binder prevents lake from fading, it destabilises the carminic acid. These findings are discussed in the light of the interactions of the dye with the solvent and matrix.
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