首页> 外文期刊>Organometallics >Impact of the Linker on the Electronic and Luminescent Properties of Diboryl Compounds: Molecules with Two BMes(2) Groups and the Peculiar Behavior of 1,6-(BMes(2))(2)pyrene
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Impact of the Linker on the Electronic and Luminescent Properties of Diboryl Compounds: Molecules with Two BMes(2) Groups and the Peculiar Behavior of 1,6-(BMes(2))(2)pyrene

机译:接头对二硼烷基化合物的电子和发光性能的影响:具有两个BMes(2)基团的分子和1,6-(BMes(2))(2)py的特殊行为

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摘要

To investigate the impact of the linker on the electronic and photophysical properties of diboryl compounds, three new diboryl compounds that contain two BMes(2) groups (Mes = mesityl) have been synthesized, including a planar 1,6-(BMes(2))(2)pyrene (1), a V-shaped bis(p-BMes(2)phenyl)diphenylsilane (4), and a U-shaped 1,8-bis(p-BMes(2)phenyl)naphthalene (5). For comparison, two previously known compounds, p-(BMes(2))(2)benzene (3) and 1,8-bis(p-BMes(2)-biphenyl)naphthalene (6), were also investigated. The aromatic linkers in these molecules have been found to have a dramatic impact on the electron-accepting ability and Lewis acidity of the diboryl compounds through their distinct steric and electronic properties. Compound 1 has the most positive reduction potential (E-1/2(red1) = -1.81 V, relative to FeCp20/+), while 5 has the most negative reduction potential (E-1/2(red1) = -2.34 V). All compounds are blue emit ters with considerable variation of emission energy and efficiencies (e.g., lambda(em) = 446, 402, 395 nm, Phi = similar to 1.0, 0.17, similar to 1.0 for 1, 4, and 5, respectively), and each displays a distinct and selective response toward fluoride ions. Upon addition of fluoride ions, compound 1 displays an unusual red shift and an on-off response in both absorption and fluorescent spectra. By comparing the behavior of 1 to that of the monoboryl compound 1-BMes(2)pyrene (2) and 3, and with TD-DFT computations on 1 and its fluoride adducts 1F and 1F(2), it has been found that the peculiar response of 1 toward fluoride ions is caused by the dominance of pyrene pi orbitals at the HOMO level of 1F and the relatively low-energy charge transfer from the pyrene ring to the three-coordinate boron center in 1F. The crystal structures of 2, 4, 1F(2), and 5F(2) were determined by X-ray diffraction analyses. The potential use of compound 1 as either a blue emitter or a bifunctional emitter in OLEDs has been demonstrated by the successful fabrication of double- and triple-layer electroluminescent devices.
机译:为了研究接头对二硼烷基化合物的电子和光物理性质的影响,已合成了包含两个BMes(2)基团(Mes = mesityl)的三个新的二硼烷基化合物,包括平面1,6-(BMes(2) )(2)((1),V形双(p-BMes(2)苯基)二苯基硅烷(4)和U形1,8-双(p-BMes(2)苯基)萘(5 )。为了进行比较,还研究了两种先前已知的化合物,对-(BMes(2))(2)苯(3)和1,8-双(对-BMes(2)-联苯)萘(6)。已经发现这些分子中的芳族连接基通过其独特的空间和电子性质对二硼烷基化合物的电子接受能力和路易斯酸度具有显着影响。化合物1的还原电位最高(E-1 / 2(red1)= -1.81 V,相对于FeCp20 / +),化合物5的还原电位最高(E-1 / 2(red1)= -2.34 V )。所有化合物均为蓝色发射剂,其发射能量和效率有很大差异(例如,λ(em)= 446、402、395 nm,Phi =分别类似于1.0、0.17,分别类似于1、4和5的1.0) ,并且每个都显示出对氟离子的不同选择性响应。加入氟离子后,化合物1在吸收光谱和荧光光谱中均显示出异常的红移和开关响应。通过将1的行为与单硼烷基化合物1-BMes(2)re(2)和3的行为进行比较,并通过TD-DFT计算1及其氟化物加合物1F和1F(2)的行为,发现1对氟离子的特殊响应是由于of的π轨道在1F的HOMO能级上占优势,以及能量相对较低的电荷从the环转移到1F的三坐标硼中心引起的。通过X射线衍射分析确定2、4、1F(2)和5F(2)的晶体结构。双层和三层电致发光器件的成功制造证明了化合物1作为OLED中的蓝色发射器或双功能发射器的潜在用途。

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