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首页> 外文期刊>Advanced Functional Materials >From blue to red: Syntheses, structures, electronic, and electroluminescent properties of tunable luminescent N,N chelate boron complexes
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From blue to red: Syntheses, structures, electronic, and electroluminescent properties of tunable luminescent N,N chelate boron complexes

机译:从蓝色到红色:可调发光N,N螯合硼配合物的合成,结构,电子和电致发光性质

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A comprehensive study of a series four-coordinate boron compounds with the general formula of BPh2(N,N), where N,N are bidentate chelate ligands containing both neutral and negatively charged nitrogen donor atoms has been conducted. The structures of the boron complexes were examined via single-crystal X-ray diffraction. The series of molecules display bright luminescence with emission maxima lambda(max) ranging from blue to red, depending on the nature of the N,N chelate ligand. The electronic effects and their consequences on the luminescent properties of the complexes due to the CH replacement of the chelate ligand by a nitrogen atom, the increase of conjugation, or the change of substituents on the chelate ligand have been examined using electrochemical analysis, UV-visible, and fluorescence spectroscopic methods, and by molecular orbital calculations (Gaussian 98). Experimental data and MO calculation results established that the emission of this class of compounds is caused by pi-pi* transitions centered on the chelate ligand. Furthermore, the experimental and theoretical results consistently and conclusively established that electron withdrawing groups on the negatively charged N-donor portion of the chelate ligand causes a decrease in the highest occupied molecular orbital (HOMO) energy level, thus increasing the energy gap. The CH replacement by a nitrogen atom on the negatively charged portion of the chelate ligand causes a dramatic decrease of the HOMO energy level, and the increase of conjugation in the chelate ligand significantly decreases the energy gap. Blue and red electroluminescent (EL) devices were fabricated successfully using two representative boron compounds from the series. The new boron compounds have been found to be able to function as both emitters and electron transport materials in EL devices.
机译:进行了一系列通式为BPh2(N,N)的四配位硼化合物的综合研究,其中N,N是同时含有中性和负电荷氮供体原子的双齿螯合物。通过单晶X射线衍射检查硼配合物的结构。该系列分子显示出明亮的发光,其最大发射λ(max)从蓝色到红色,具体取决于N,N螯合物的性质。已使用电化学分析方法检测了电子效应及其对配合物发光性能的影响,这些效应是由于用氮原子将螯合配体的CH取代,结合的增加或螯合配体上取代基的变化而引起的,可见光和荧光光谱法,并通过分子轨道计算(高斯98)。实验数据和MO计算结果确定,这类化合物的发射是由以螯合配体为中心的pi-pi *跃迁引起的。此外,实验和理论结果一致且结论性地确定,螯合配体的带负电荷的N供体部分的吸电子基团导致最高占据分子轨道(HOMO)的能级降低,从而增加了能隙。 CH在螯合物配体的负电荷部分上被氮原子取代的CH导致HOMO能级显着降低,并且螯合物配体的共轭增加显着减小了能隙。使用该系列中的两种代表性硼化合物成功制造了蓝色和红色电致发光(EL)器件。已经发现,新的硼化合物能够用作EL器件中的发射体和电子传输材料。

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