Bichan Nataliya, Tsaturyan Arshak, Ovchenkova Ekaterina, Kudryakova Nadezhda, Gostev Fedor, Shelaev Ivan, Aybush Arseny, Nadtochenko Victor, Lomova Tatyana
G.A. Krestov Institute of Solution Chemistry of the Russian Academy of Sciences, Ivanovo, Russia.
Univ Lyon, UJM-Saint-Etienne, CNRS, IOGS, Laboratoire Hubert Curien UMR5516, F-42023 St-Etienne, France.
Dalton Trans. 2022 Jun 13;51(23):9072-9084. doi: 10.1039/d2dt01182d.
In the context of the development of coordination energy-harvesting systems, the axial bonding of cobalt(II) octakis(3,5-di--butylphenoxy)phthalocyanine (1) with gold(III) 2,3,7,8,12,18-hexamethyl,13,17-diethyl,5-(pyridin-4-yl)- and (2,3,7,8,12,18-hexamethyl,13,17-diethyl,5-(pyridin-3-yl)porphin (2 and 3), the structure, the spectral/electrochemical properties of the resulting donor-acceptor complexes and photoinduced electron transfer in them are studied. The process of the dyad formation passing as self-assembly in the donor-acceptor phthalocyanine-porphyrin systems was explored using UV-Visible, IR, and H NMR spectroscopy and mass spectrometry. The geometric and electronic structures of the dyads were identified using density functional theory (DFT) and time-dependent DFT calculations. The electron transfer in the coordination complexes studied was confirmed by recording the radical ion pairs namely 1˙:2˙/1˙:3˙ and measuring the kinetics of the photoinduction and decay of these states by a femtosecond laser photolysis technique. The effect of the gold(III) porphyrin macrocycle nature in the lifetime of radical ion pairs was shown. The redox potential values for the coordination dyads and the photoelectrochemical parameters defining their perspective in design and understanding of PET systems were observed using the cyclic voltammetry/amperometry methods and the short-circuited electrochemical cell Ti|a dyad film|0.5 M NaSO|Pt, respectively.
在协同能量收集系统的发展背景下,研究了钴(II)八(3,5-二叔丁基苯氧基)酞菁(1)与金(III)2,3,7,8,12,18-六甲基、13,17-二乙基、5-(吡啶-4-基)卟啉(2)和(2,3,7,8,12,18-六甲基、13,17-二乙基、5-(吡啶-3-基)卟啉(3)的轴向键合、所得供体-受体配合物的结构、光谱/电化学性质以及其中的光诱导电子转移。使用紫外-可见光谱、红外光谱和核磁共振光谱以及质谱研究了供体-受体酞菁-卟啉体系中作为自组装过程的二元体形成过程。使用密度泛函理论(DFT)和含时DFT计算确定了二元体的几何和电子结构。通过记录自由基离子对1˙:2˙/1˙:3˙并利用飞秒激光光解技术测量这些状态的光诱导和衰减动力学,证实了所研究的配位配合物中的电子转移。展示了金(III)卟啉大环性质对自由基离子对寿命的影响。分别使用循环伏安法/电流分析法和短路电化学电池Ti|二元体薄膜|0.5 M NaSO|Pt观察了配位二元体的氧化还原电位值以及定义其在PET系统设计和理解中的前景的光电化学参数。