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虾青素超分子聚集体的聚集诱导共振拉曼光学活性(AIRROA)及时间相关的螺旋度切换

Aggregation-Induced Resonance Raman Optical Activity (AIRROA) and Time-Dependent Helicity Switching of Astaxanthin Supramolecular Assemblies.

作者信息

Dudek Monika, Zajac Grzegorz, Kaczor Agnieszka, Baranska Malgorzata

机构信息

Faculty of Chemistry, Jagiellonian University , Ingardena 3, Krakow 30-060, Poland.

Jagiellonian Centre for Experimental Therapeutics (JCET), Jagiellonian University , Bobrzynskiego 14, Krakow 30-348, Poland.

出版信息

J Phys Chem B. 2016 Aug 18;120(32):7807-14. doi: 10.1021/acs.jpcb.6b05514. Epub 2016 Aug 5.

Abstract

New methods for enhancing the Raman optical activity (ROA) signal are desirable due to the low efficiency of ROA, demanding otherwise high sample concentrations, high laser powers, and/or long acquisition times. Previously, we have demonstrated a new phenomenon, aggregation-induced resonance ROA (AIRROA), that produces significant enhancement of the ROA signal provided that the excitation wavelength coincides with the absorption of the measured species and that the electronic circular dichroism (ECD) signal in the range of this absorption is nonzero. In this work, analyzing three very different supramolecular astaxanthin aggregates (H1, H2, and J), we confirm the phenomenon and demonstrate that aggregation itself is not enough to enhance the ROA signal and that the above-mentioned conditions are necessary for induction of the resonance ROA effect. Additionally, by analyzing the changes in the ECD spectra of the H1 assembly, we demonstrate that the supramolecular helicity sign switches with time, which is dependent on the prevalence of kinetic or thermodynamic stabilization of the obtained aggregates.

摘要

由于拉曼光学活性(ROA)效率较低,需要高样品浓度、高激光功率和/或长时间采集时间,因此需要增强ROA信号的新方法。此前,我们已经证明了一种新现象,即聚集诱导共振ROA(AIRROA),只要激发波长与被测物种的吸收相匹配,并且在此吸收范围内的电子圆二色性(ECD)信号不为零,就会产生显著增强的ROA信号。在这项工作中,通过分析三种截然不同的超分子虾青素聚集体(H1、H2和J),我们证实了这一现象,并证明聚集本身不足以增强ROA信号,上述条件是诱导共振ROA效应所必需的。此外,通过分析H1组装体ECD光谱的变化,我们证明超分子螺旋度符号随时间切换,这取决于所获得聚集体的动力学或热力学稳定性的普遍程度。

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