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开壳层第一行过渡金属八丁氧基萘酞菁的光物理行为:以CoNc(OBu)8和CuNc(OBu)8为例进行研究。

Photophysical behavior of open-shell first-row transition-metal octabutoxynaphthalocyanines: CoNc(OBu)8 and CuNc(OBu)8 as case studies.

作者信息

Soldatova Alexandra V, Kim Junhwan, Rosa Angela, Ricciardi Giampaolo, Kenney Malcolm E, Rodgers Michael A J

机构信息

Center for Photochemical Sciences and Department of Chemistry, Bowling Green State University, Bowling Green, Ohio 43403, USA.

出版信息

Inorg Chem. 2008 May 19;47(10):4275-89. doi: 10.1021/ic7023204. Epub 2008 Apr 12.

Abstract

Ultrafast photodynamics and density functional theory/time-dependent density functional theory (DFT/TDDFT) results for complexes of Co and Cu with 5,9,14,18,23,27,32,36-octabutoxynaphthalocyanine [CoNc(OBu)8 and CuNc(OBu)8] are reported. As a basis for this work, details concerning the syntheses of these complexes and the corresponding Zn complex (used as a reference) are given. Transient absorption spectrometry with femtosecond time resolution combined with a detailed DFT/TDDFT analysis has been employed to construct a complete picture of the excited-state dynamics after Q-band excitation of the Co and Cu complexes and to gain an understanding of the relationship between the nature of the metal center and the excited-state lifetime. The Co complex was shown to return to its ground state via two competing channels: a (2)T1(pi, pi*) state that decayed with a lifetime of 1 ps and a low-lying (2)(d, d) state that repopulated the ground-state surface with a lifetime of 15 ps. CuNc(OBu)8 showed ground-state repopulation from the (2)T1(pi, pi*) state via a lower-lying ligand-to-metal charge-transfer (LMCT) state that was completed within a few nanoseconds. The photophysical behavior of the cobalt and copper complexes was compared to that previously reported for the nickel analog in an effort to highlight the effect of the central metal on the nature and rates of the deactivation pathways. The results described in this work provide basic knowledge that is relevant to the use of these compounds as photothermal sensitizers in cancer therapy.

摘要

报道了钴和铜与5,9,14,18,23,27,32,36-八丁氧基萘酞菁[CoNc(OBu)8和CuNc(OBu)8]配合物的超快光动力学以及密度泛函理论/含时密度泛函理论(DFT/TDDFT)结果。作为这项工作的基础,给出了这些配合物以及相应锌配合物(用作参考)合成的详细信息。采用具有飞秒时间分辨率的瞬态吸收光谱法并结合详细的DFT/TDDFT分析,构建了钴和铜配合物在Q波段激发后激发态动力学的完整图景,并了解金属中心的性质与激发态寿命之间的关系。结果表明,钴配合物通过两个竞争通道回到基态:一个寿命为1 ps的(2)T1(π,π*)态和一个寿命为15 ps的低能级(2)(d,d)态,该低能级态重新填充基态表面。CuNc(OBu)8通过一个寿命较短的配体到金属的电荷转移(LMCT)态从(2)T1(π,π*)态重新填充基态,该过程在几纳秒内完成。将钴和铜配合物的光物理行为与之前报道的镍类似物的光物理行为进行了比较,以突出中心金属对失活途径的性质和速率的影响。这项工作中描述的结果提供了与这些化合物在癌症治疗中用作光热敏化剂相关的基础知识。

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