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基于OEP和TPP的中心磷(V)卟啉-萘共轭物的合理设计与合成:通过快速电荷复合形成三线态

Rational Design and Synthesis of OEP and TPP Centered Phosphorus(V) Porphyrin-Naphthalene Conjugates: Triplet Formation via Rapid Charge Recombination.

作者信息

Poddutoori Prashanth K, Bayard Brandon J, Holzer Noah, Seetharaman Sairaman, Zarrabi Niloofar, Weidner Nathan, Karr Paul A, D'Souza Francis

机构信息

Department of Chemistry & Biochemistry, University of Minnesota Duluth, 1039 University Drive, Duluth, Minnesota 55812, United States.

Department of Chemistry, University of North Texas, 1155 Union Circle, #305070, Denton, Texas 76203-5017, United States.

出版信息

Inorg Chem. 2021 Dec 6;60(23):17952-17965. doi: 10.1021/acs.inorgchem.1c02531. Epub 2021 Nov 19.

Abstract

Six new "axial-bonding" type "phosphorus(V) porphyrin-naphthalene" conjugates have been prepared consisting of octaethylporphyrinatophosphorus(V) (POEP)/tetraphenylporphyrinatophosphorus(V) (PTPP) and naphthalene (NP). The distance between the porphyrin and NP was systematically varied using polyether bridges. The unique structural topology of the octaethylporphyrinatophosphorus(V) (POEP) and tetraphenylporphyrinatophosphorus(V) (PTPP) enabled construction of mono- and disubstituted phosphorus(V) porphyrin-naphthalene conjugates, respectively. The steady-state and transient spectral properties were investigated as a function of redox properties, distance, and molecular topology. Strong electronic interactions between the phosphorus(V) porphyrin and NP in directly bound conjugates were observed. The established energy diagrams predicted reductive electron transfer involving singlet excited phosphorus(V) porphyrin and NP to generate high-energy (∼1.83-2.11 eV) charge-separated states (POEP/PTPP)-(NP). Femtosecond transient absorption spectral studies revealed rapid deactivation of singlet excited phosphorus(V) porphyrin due to charge separation wherein the estimated forward rate constants were in the range of 10-10 s and were dependent on the distance between the NP and porphyrins units, as well as the redox potentials of the type of the phosphorus(V) porphyrin. Additionally, due to high exothermicity and low-lying triplet states, the charge recombination process was found to be rapid, leading to populating the triplet states of phosphorus(V) porphyrins.

摘要

已经制备了六种新型的“轴向键合”型“磷(V)卟啉 - 萘”共轭物,它们由八乙基卟啉磷(V)(POEP)/四苯基卟啉磷(V)(PTPP)和萘(NP)组成。使用聚醚桥系统地改变了卟啉与NP之间的距离。八乙基卟啉磷(V)(POEP)和四苯基卟啉磷(V)(PTPP)独特的结构拓扑结构分别使得能够构建单取代和双取代的磷(V)卟啉 - 萘共轭物。研究了稳态和瞬态光谱性质与氧化还原性质、距离和分子拓扑结构的关系。观察到直接结合的共轭物中磷(V)卟啉与NP之间存在强烈的电子相互作用。建立的能量图预测了涉及单线态激发的磷(V)卟啉和NP的还原电子转移,以产生高能(约1.83 - 2.11 eV)的电荷分离态(POEP/PTPP) - (NP)。飞秒瞬态吸收光谱研究表明,由于电荷分离,单线态激发的磷(V)卟啉迅速失活,其中估计的正向速率常数在10 - 10 s范围内,并且取决于NP与卟啉单元之间的距离以及磷(V)卟啉类型的氧化还原电位。此外,由于高放热性和低三重态,发现电荷复合过程很快,导致磷(V)卟啉的三重态被填充。

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