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首页> 外文期刊>CrystEngComm >The phosphorescent co-crystals of 1,4-diiodotetrafluorobenzene and bent 3-ring-N-heterocyclic hydrocarbons by C-I center dot center dot center dot N and C-I center dot center dot center dot pi halogen bonds
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The phosphorescent co-crystals of 1,4-diiodotetrafluorobenzene and bent 3-ring-N-heterocyclic hydrocarbons by C-I center dot center dot center dot N and C-I center dot center dot center dot pi halogen bonds

机译:通过C-I中心点中心点中心点N和C-I中心点中心点中心点pi卤素键形成1,4-二碘四氟苯和弯曲的3环-N-杂环烃的磷光共晶体

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摘要

The co-crystals 1-3 were successfully assembled from 1,4-diiodotetrafluorobenzene (1,4-DITFB) and bent 3-ring-N-heterocyclic hydrocarbons (3-R-NHHs) based on halogen bonds (XBs) and other weak interactions. The halogen bond as a good strategy of introducing a metal-free heavy-atom perturber at a suitable stoichiometry is further confirmed, which makes the spin-orbital coupling more efficient and the phosphorescence more observable. Herein, the selected 3-R-NHHs in co-crystals 1-3 show different emissions, of green, orange-yellow and orange phosphorescence with well defined vibrational bands at 544 nm (max) for 1, 592 nm (max) for 2 and 605 nm (max) for 3, whereas the pure 3-R-NHHs are not phosphorescent in the solid state. The reason can be mainly ascribed to the different N-positions within the three 3-R-NHHs that affect the C-I center dot center dot center dot pi halogen bond properties, which influence further the energy level of the excited triplet state and meanwhile make the transition from T-1 to the higher vibrational level of the S-0 state become more probable with respect to the free monomer. It is estimated that in the co-crystals the energy level of the excited pi pi* triplet state is lowered, as evidenced by the presence of a bathochromic effect in the maximum emission bands of 50-100 nm. The other interactions and local molecular environment can affect the phosphorescent behaviours, too. The different phosphorescent behaviours of three co-crystals should be suitable for the design of some appropriate pi-type acceptors for the development of phosphorescent materials via the introduction of halogen bonds.
机译:共晶1-3由1,4-二碘四氟苯(1,4-DITFB)和基于卤素键(XB)和其他弱键的弯曲3环-N-杂环烃(3-R-NHHs)成功组装而成互动。进一步确认了卤素键作为以合适的化学计量引入无金属的重原子扰动剂的良好策略,这使得自旋-轨道偶合更有效并且磷光更可观察。在此,在共晶体1-3中选择的3-R-NHHs显示绿色,橙黄色和橙色磷光的不同发射,并在544 nm(最大),1 592 nm(最大)处具有明确定义的振动带和3的605 nm(最大值),而纯净的3-R-NHHs在固态下不发磷光。原因可能主要归因于三个3-R-NHHs中不同的N位置,它们影响CI中心点中心点中心点pi的卤素键性质,这进一步影响了激发三重态的能级,同时使得相对于游离单体,从T-1到S-0状态的更高振动水平的跃迁变得更有可能。据估计,在共晶体中,被激发的pi pi *三重态的能级降低了,这在50-100 nm的最大发射带中存在红移效应得以证明。其他相互作用和局部分子环境也会影响磷光行为。三种共晶体的不同磷光行为应适合于设计一些合适的pi型受体,以通过引入卤素键来开发磷光材料。

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