Dinga Daniel K, Bredol Michael, Kynast Ulrich
Institute for Optical Technologies, Muenster University of Applied Sciences, 48565 Steinfurt, Germany.
J Phys Chem A. 2023 Feb 9;127(5):1130-1140. doi: 10.1021/acs.jpca.2c06339. Epub 2023 Jan 26.
The sensitive detection of singlet oxygen (O) is one key issue in various photochemical analyses, reactions, and processes; it is indispensable for designing catalysts for photodynamic therapies. Corresponding fluorescence-based organic O monitor luminophores may be equipped with rare-earth complexes with several intrinsic advantages. The design of the necessary ligands being a tedious, time-consuming effort, often involving empirical guesswork, we decided to support our experimental work with quantum chemical calculations. Hence, next to the experimental core, this paper suggests the additional use of time-dependent density functional theory (TDDFT) on suitable, free β-diketonate ligands to devise corresponding Eu complexes as O probes eventually; the free ligand calculations obviously allow profoundly reduced computational efforts. Novel β-diketonate-substituted dimethyl anthracene complexes of Eu, Tb, and Gd and their endoperoxidized descendants were thus synthesized, compared to known related complexes and analyzed with regard to their electronic characteristics; in addition, spectroscopy of a Eu complex with ancillary epoxiphenanthroline for subsequent attachment to biological substrates featuring -NH or -SH groups was included. The spectroscopic determination of the decisive lowest triplet (T) states of the Gd complexes could be matched by the Tamm-Dancoff approximation (TDA)/TDDFT calculations on the free ligands satisfactorily if suitable functionals were applied. Most significantly, the results suffice to describe the luminescence "switch-on" mechanism of this complex in the presence of O.
单线态氧(O)的灵敏检测是各种光化学分析、反应和过程中的一个关键问题;它对于设计光动力疗法的催化剂不可或缺。相应的基于荧光的有机O监测发光体可能配备具有多种固有优势的稀土配合物。由于设计所需配体是一项繁琐、耗时的工作,通常涉及经验猜测,我们决定用量子化学计算来支持我们的实验工作。因此,除了实验核心内容外,本文还建议对合适的游离β-二酮配体额外使用含时密度泛函理论(TDDFT),以最终设计出相应的铕配合物作为O探针;游离配体的计算显然可以大幅减少计算量。因此,合成了新型的铕、铽和钆的β-二酮取代二甲基蒽配合物及其内过氧化物衍生物,与已知的相关配合物进行比较,并分析其电子特性;此外,还包括一种带有辅助环氧菲咯啉的铕配合物的光谱,用于后续附着到具有-NH或-SH基团的生物底物上。如果应用合适的泛函,钆配合物决定性的最低三重态(T)的光谱测定可以通过对游离配体的Tamm-Dancoff近似(TDA)/TDDFT计算令人满意地匹配。最重要的是,这些结果足以描述该配合物在O存在下的发光“开启”机制。