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通过太赫兹光谱鉴别喹吖啶酮颜料:吸收实验与固态密度泛函理论模拟

Distinguishing Quinacridone Pigments via Terahertz Spectroscopy: Absorption Experiments and Solid-State Density Functional Theory Simulations.

作者信息

Squires A D, Lewis R A, Zaczek Adam J, Korter Timothy M

机构信息

Institute for Superconducting and Electronic Materials and School of Physics, University of Wollongong , Wollongong New South Wales 2522, Australia.

Department of Chemistry, Syracuse University , 1-014 Center for Science and Technology, Syracuse, New York 13244-4100, United States of America.

出版信息

J Phys Chem A. 2017 May 11;121(18):3423-3429. doi: 10.1021/acs.jpca.7b01582. Epub 2017 Apr 26.

Abstract

Through a combined experimental and theoretical investigation we determine that the fundamental modes of three quinacridones fall in the terahertz spectral range (1-10 THz, ∼30-300 cm). In each spectrum the terahertz resonances correspond to wagging, rocking, or twisting of the quinacridone rings, with the most intense absorption being an in-plane rocking vibration of the carbonyl oxygens. In spite of these spectral similarities, we demonstrate that terahertz measurements readily differentiate β-quinacridone, γ-quinacridone, and 2,9-dimethylquinacridone. The spectrum of β-quinacridone has a group of closely spaced modes at ∼4 THz, whereas in contrast the spectrum of γ-quinacridone displays a widely spaced series of modes spread over the range ∼1-5 THz. Both of these have the strongest mode at ∼9 THz, whereas in contrast 2,9-dimethylquinacridone exhibits the strongest mode at ∼7 THz. Because quinacridones are the basis of widely used synthetic pigments of relatively recent origin, our findings offer promising applications in the identification and dating of modern art.

摘要

通过结合实验和理论研究,我们确定三种喹吖啶酮的基本模式落在太赫兹光谱范围(1 - 10太赫兹,约30 - 300厘米)内。在每个光谱中,太赫兹共振对应于喹吖啶酮环的摇摆、摆动或扭转,最强吸收是羰基氧的面内摇摆振动。尽管存在这些光谱相似性,但我们证明太赫兹测量能够轻松区分β - 喹吖啶酮、γ - 喹吖啶酮和2,9 - 二甲基喹吖啶酮。β - 喹吖啶酮的光谱在约4太赫兹处有一组紧密间隔的模式,而相比之下,γ - 喹吖啶酮的光谱显示出一系列广泛间隔的模式,分布在约1 - 5太赫兹范围内。这两者在约9太赫兹处都有最强模式,而相比之下,2,9 - 二甲基喹吖啶酮在约7太赫兹处表现出最强模式。由于喹吖啶酮是相对较新出现的广泛使用的合成颜料的基础,我们的发现为现代艺术的鉴定和年代测定提供了有前景的应用。

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