Bellinger Stephanie, Hatamimoslehabadi Maryam, Bag Seema, Mithila Farha, La Jeffrey, Frenette Mathieu, Laoui Samir, Szalda David J, Yelleswarapu Chandra, Rochford Jonathan
Department of Chemistry, University of Massachusetts Boston, 100 Morrissey Boulevard, Boston, Massachusetts, 02125, USA.
Department of Physics, University of Massachusetts Boston, 100 Morrissey Boulevard, Boston, Massachusetts, 02125, USA.
Chemistry. 2018 Jan 19;24(4):906-917. doi: 10.1002/chem.201704423. Epub 2017 Dec 14.
The synthesis and characterization of a series of donor-π-acceptor-π-donor (D-A-D) curcuminoid molecules is presented herein that incorporates π-extended aryl and electron-donating amino terminal functionalization. Computational evaluation shows these molecules possess quadrupolar character with the lowest energy transitions displaying high molar extinction coefficients with broad tunability through manipulation of terminal donating groups. Consistent with their quadrupolar nature, these molecules show varying degrees of solvatochromic behavior in both their absorption and emission spectra, which has been analyzed by Lippert-Mataga and Kamlet-Taft analysis. Photophysical and photoacoustic (PA) properties of these molecules have been investigated by the optical photoacoustic z-scan (OPAZ) method. Selected curcuminoid molecules display nonlinear behavior at a high laser fluence through excited state absorption that translates to the production of an enhanced photoacoustic emission. A relative comparison of "molar PA emission" is also presented with the crystal violet linear optical absorbing/linear PA emitting system being utilized as a standard reference material for OPAZ experiments. Furthermore, PA tomography experiments are presented to illustrate the enhanced PA contrast obtainable via an excited state absorption.
本文介绍了一系列供体-π-受体-π-供体(D-A-D)姜黄素类分子的合成与表征,这些分子包含π-扩展芳基和供电子氨基末端官能化。计算评估表明,这些分子具有四极特性,最低能量跃迁显示出高摩尔消光系数,通过操纵末端供体基团可实现广泛的可调谐性。与它们的四极性质一致,这些分子在吸收光谱和发射光谱中均表现出不同程度的溶剂化显色行为,已通过Lippert-Mataga和Kamlet-Taft分析进行了分析。这些分子的光物理和光声(PA)性质已通过光学光声z扫描(OPAZ)方法进行了研究。选定的姜黄素类分子在高激光能量密度下通过激发态吸收表现出非线性行为,这转化为增强的光声发射的产生。还给出了“摩尔PA发射”的相对比较,将结晶紫线性光学吸收/线性PA发射系统用作OPAZ实验的标准参考材料。此外,还进行了PA断层扫描实验,以说明通过激发态吸收可获得增强的PA对比度。