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1. 吉林大学, 超分子结构与材料教育部重点实验室,吉林 长春,130023
2. 吉林大学, 材料学院,吉林 长春,130023
收稿日期:2003-01-14,
修回日期:2003-07-22,
纸质出版日期:2004-01-20
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杨国波, 孙晓波, 吴英, 田文晶, 李敏. 液晶性噁二唑类载流子传输材料[J]. 发光学报, 2004,25(1): 39-43
YANG Guo-bo, SUN Xiao-bo, WU Ying, TIAN Wen-jing, LI Min. Carriers Transporting Materials Containing Oxadiazole Liquid Crystalline Groups[J]. Chinese Journal of Luminescence, 2004,25(1): 39-43
将液晶基团引入到载流子传输材料中合成了新型液晶性噁二唑类衍生物E
3
和E
6
利用偏光显微镜、差热扫描和广角
X
射线衍射的方法对其液晶性进行了研究
结果表明
E
3
为单向近晶型液晶
E
6
为双向近晶型液晶.同时
利用紫外-可见吸收光谱和电化学方法测定了材料的能级结构参数
其高的LUMO能级
低的HOMO能级(相对真空能级)及较大的带隙表明
它们不仅有利于电子从阴极的注入
还对空穴和激子具有一定的阻挡作用.由于材料在有序的近晶相比在无序的各向同性相将具有高的载流子迁移率
因此将液晶性与传输性相结合对提高材料载流子迁移率具有非常重要的意义.
Over the last two decades
much attention has been paid to mesomophic compounds containing heterocyclic units. Most of these investigated mesogens are 1
4-disubstituted six-mengered aromatic
heteroaromatic or aliphatic rings as basic units
which unit have almost linearity as required according to the classical concept of calamitic mesogens. Mesomorphic compounds containing five membered heterocycles have been less investigated. Liquid crystalline 1
3
4-oxadiazoles were described only in recent years. In connection with the considerable theoretical and technological interest in banana shaped achiral molecules and electron transport materials used in light-emitting diodes(LED)
substituted 1
3
4-oxadiazoles become more significant. Due to the electron deficient property and poor hole accepting character of 1
3
4-oxadiazole ring
certain low molecular weight aromatic 1
3
4-oxadiazole derivatives facilitate both electron injection and transport. Aromatic 1
3
4-oxadiazoles
such as 2-(4-tert-buty-phenel)-5-biphenyl-1
3
4-oxadizole(PBD)
have been synthesized and widely used as electron-conducting/hole-blocking materials in multiplayer devices. According to H.Tokohisa
et al
’s recent investigations of liquid crystalline 1
3
4-oxadiazole derivatives
the carrier mobility is higher in the more ordered smectic phase than that in the less ordered phase. In addition
the present increasing interest in liquid crystalline oxadiazoles is due to their photoconducting properties. Here two novel liquid crystals based on 2
5-diphenyl-1
3
4-oxadiazole as mesogenic group
namely 2-[(4-methoxy) phenyl]-5-{[4-n-methoxy) phenoxy]
propyloxy} phenyl-1
3
4-oxadiazole (E
3
) and 2-[(4-methoxy) phenyl]-5-{[4-n-methoxy) phenoxy]
hexyloxy} phenyl-1
3
4-oxadiazole (E
6
) have been synthesized. Their liquid crystalline behaviors were studied by differential scanning calorie-meter (DSC)
polarizing microscopy (POM) as well as wide angle X-ray diffraction (WAXD). The results showed that both E
3
and E
6
exhibited semetic phases. UV-Vis spectra and cyclic voltammetry were used to investigate their energy level parameters. The highest occupied molecular orbital (HOMO)
the lowest unoccupied molecular orbital (LUMO) and the energy gap obtained showed that the HOMO level of E
3
and E
6
is relative low
the LUMO level is relative high while the energy gap is relative high
which indicated that they are not only benefit for the electrons injection but also for the block of holes and excitons. It can be predicted that the electron transporting material with liquid crystalline group will play an important role in the improvement of the properties organic electroluminescent devices.
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