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功能化单 MLCT、S1 红外活性羧酸酯报告配体的 Mo2 桨轮配合物:基态和光激发态的制备和研究。

Mo2 paddlewheel complexes functionalized with a single MLCT, S1 infrared-active carboxylate reporter ligand: preparation and studies of ground and photoexcited states.

机构信息

Department of Chemistry and Biochemistry, The Ohio State University , 100 W. 18th Avenue, Columbus, Ohio 43210, United States.

出版信息

Inorg Chem. 2014 Jan 6;53(1):637-44. doi: 10.1021/ic402775s. Epub 2013 Dec 20.

DOI:10.1021/ic402775s
PMID:24359530
Abstract

From the reactions between Mo2(DAniF)3pivalate (DAniF = N,N'-di(p-anisyl)formamidinate) and the carboxylic acids LH, the title compounds Mo2(DAniF)3L have been prepared and characterized: compounds I (L = O2CC≡CPh), II (L = O2CC4H2SC≡CH), and III (L = O2CC6H4-p-CN). The new compounds have been characterized in their ground states by spectroscopy ((1)H NMR, ultraviolet-visible absorption, near-infrared absorption, and steady state emission), cyclic voltammetry, and density functional theory calculations. The compounds show strong metal Mo2 to ligand L δ-π* transitions in their visible spectra. The nature of the S1 (1)MLCT and T1 states has been probed by time-resolved (femtosecond and nanosecond) transient absorption and infrared spectroscopy. The observed shifts of the C≡C and C≡N vibrational modes are found to be consistent with the negative charge being localized on the single L in the S1 states, while the T1 states are (3)Mo2 δδ*. The present results are compared to earlier studies of the photoexcited states of trans-Mo2(2,4,6-triisopropylbenzoate)2L2 compounds that have been assigned as either localized or delocalized.

摘要

从 Mo2(DAniF)3pivalate(DAniF = N,N'-二(对茴香基)甲脒)与羧酸 LH 的反应中,制备并表征了标题化合物 Mo2(DAniF)3L:化合物 I(L = O2CC≡CPh)、II(L = O2CC4H2SC≡CH)和 III(L = O2CC6H4-p-CN)。新化合物在其基态下通过光谱((1)H NMR、紫外-可见吸收、近红外吸收和稳态发射)、循环伏安法和密度泛函理论计算进行了表征。这些化合物在其可见光谱中表现出强烈的金属 Mo2 到配体 L δ-π跃迁。通过飞秒和纳秒瞬态吸收和红外光谱研究了 S1(1)MLCT 和 T1 态的性质。观察到的 C≡C 和 C≡N 振动模式的位移与单 L 在 S1 态下的负电荷定位一致,而 T1 态为(3)Mo2 δδ。将当前结果与先前关于 trans-Mo2(2,4,6-三异丙基苯甲酸盐)2L2 化合物的光激发态的研究进行了比较,这些化合物被分配为局域或离域。

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