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基于 2-苯基吡啶和 2-(苯并[b]噻吩-2-基)吡啶的 o-碳硼烷化合物:芳环结构形成对光物理性质的影响。

2-Phenylpyridine- and 2-(benzo[b]thiophen-2-yl)pyridine-based o-carboranyl compounds: impact of the structural formation of aromatic rings on photophysical properties.

机构信息

Department of Chemistry and Institute for Molecular Science and Fusion Technology, Kangwon National University, Chuncheon, Gangwon 24341, Republic of Korea.

出版信息

Dalton Trans. 2019 Jan 22;48(4):1467-1476. doi: 10.1039/c8dt04367a.

Abstract

2-Phenylpyridine- and 2-(benzo[b]thiophen-2-yl)pyridine-based (ppy- and btp-based) o-carboranyl (Car1 and Car2) and their B(CH3)2-C∧N-chelated (Car1B and Car2B) compounds were prepared and fully characterised by multinuclear NMR spectroscopy and elemental analysis. The solid-state structure of Car2B was determined by single-crystal X-ray diffraction, which revealed a four-coordinated dimethylboryl centre. All compounds displayed major absorption bands that were assigned to π-π* transitions involving the ppy and btp moieties, as well as weak intramolecular charge-transfer (ICT) transitions between the o-carboranes and their aryl groups. Furthermore, the chelated compounds exhibited dominant low-energy absorption bands (λabs = 333 nm for Car1B and 383 nm for Car2B) resulting from the reinforcement of ICT transitions that correspond to the o-carborane moieties through the restriction of aromatic-ring free rotation. While Car1 and Car2 did not exhibit photoluminescence emissions in toluene at 298 K, Car1B and Car2B showed intense emissions, which are assignable to π-π* transitions associated with each chelated aryl group. However, Car1 and Car2 evidently emitted at around 450 nm in solution at 77 K, invoked by radiative ICT transitions between the carborane and the ppy or btp moiety, indicating that ICT-based radiative decay is only invigorated in the rigid state in the absence of structural variations, such as C-C bond fluctuations in the carborane cage and aromatic-ring free rotation. Interestingly, while Car1 in the film state exhibited a weak ICT-based emission spectrum, and Car1B and Car2B showed intense emissions originating from π-π* transitions associated with each chelated aryl group, Car2 showed significantly enhanced emissions in the same energy region as that exhibited in solution at 77 K, resulting in a much larger quantum efficiency over that in solution. DFT-optimised structures of Car1 and Car2 in their ground and the first-excited states clearly reveal that the enhanced emissive features of Car2 in the film state are strongly associated with the retained planarity of the btp moiety in both the ground and excited states. The photophysical results for these o-carboranyl compounds definitively reveal that the planarities of the aryl groups appended to the o-carborane decisively affect the efficiency of radiative decay based on ICT involving the o-carborane.

摘要

2-苯基吡啶和 2-(苯并[b]噻吩-2-基)吡啶基(ppy 和 btp)邻位碳硼烷(Car1 和 Car2)及其 B(CH3)2-C∧N 螯合(Car1B 和 Car2B)化合物通过多核 NMR 光谱和元素分析进行了制备和充分表征。Car2B 的单晶 X 射线衍射结构确定,揭示了四配位二甲基硼中心。所有化合物都显示出主要的吸收带,这些吸收带归因于涉及 ppy 和 btp 部分的 π-π跃迁,以及 o-碳硼烷与其芳基之间的弱分子内电荷转移(ICT)跃迁。此外,螯合化合物表现出主导的低能量吸收带(λabs = 333 nm 对于 Car1B 和 383 nm 对于 Car2B),这是由于 ICT 跃迁的增强,通过限制芳环的自由旋转来对应 o-碳硼烷部分。虽然 Car1 和 Car2 在甲苯中于 298 K 时没有表现出光致发光发射,但 Car1B 和 Car2B 表现出强烈的发射,这可归因于与每个螯合芳基相关的 π-π跃迁。然而,Car1 和 Car2 在 77 K 的溶液中明显在 450 nm 左右发射,这是由碳硼烷和 ppy 或 btp 部分之间的辐射 ICT 跃迁引起的,表明 ICT 基辐射衰减仅在不存在结构变化的刚性状态下被激发,例如碳硼烷笼中的 C-C 键波动和芳环的自由旋转。有趣的是,虽然 Car1 在膜状态下表现出较弱的 ICT 基发射光谱,而 Car1B 和 Car2B 表现出与每个螯合芳基相关的 π-π*跃迁引起的强烈发射,但 Car2 在相同能量区域表现出显著增强的发射,导致在膜状态下的量子效率比溶液中高得多。在其基态和第一激发态下优化的 Car1 和 Car2 的 DFT 结构清楚地表明,Car2 在膜状态下增强的发射特征强烈与 btp 部分在基态和激发态下的平面性有关。这些 o-碳硼烷化合物的光物理结果明确表明,附加到 o-碳硼烷上的芳基的平面性决定了基于 ICT 涉及 o-碳硼烷的辐射衰减效率。

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