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Synthesis of Aggregation-Induced Emission-Active Conjugated Polymers Composed of Group 13 Diiminate Complexes with Tunable Energy Levels via Alteration of Central Element

机译:通过中心元素的改变合成由可调节能级的13族二胺配合物组成的聚集诱导的发射活性共轭聚合物。

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摘要

Conjugated polymers containing boron and gallium diiminate complexes were prepared with various electron-donating comonomers via pre- and post-complexation methods, respectively. From a comparison of emission quantum yields between solution and film states, it was seen that all polymers containing group 13 elements possessed an aggregation-induced emission property. Additionally, the frontier orbital energies and the optical and electrochemical properties of the polymers can be tuned by altering a central element at the complex moieties as well as by changing a comonomer unit. In particular, it was demonstrated that the gallium atom can contribute to stabilizing the energy levels of the lowest unoccupied molecular orbitals, resulting in narrow band gaps of the conjugated polymers. This study presents the potential of gallium not only for preparing solid-state emissive conjugated polymers but also for fabricating low-band gap materials by employing the conjugated ligand.
机译:分别通过预络合和后络合方法,用各种给电子共聚单体制备了含硼和二亚甲基镓配合物的共轭聚合物。从溶液态和膜态之间的发射量子产率的比较,可以看出所有含有第13族元素的聚合物都具有聚集诱导的发射性质。另外,可以通过改变复杂部分的中心元素以及通过改变共聚单体单元来调节聚合物的前沿轨道能量以及光学和电化学性质。特别地,已证明镓原子可有助于稳定最低的未占据分子轨道的能级,从而导致共轭聚合物的窄带隙。这项研究提出了镓的潜力,不仅可以用于制备固态发射共轭聚合物,而且可以利用共轭配体制造低带隙材料。

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