浏览全部资源
扫码关注微信
1. 北京交通大学光电子技术研究所, 发光与光信息技术教育部重点实验室 北京,100044
2. 华东理工大学材料科学与工程学院, 超细材料制备与应用教育部重点实验室 上海,200237
收稿日期:2008-06-23,
修回日期:2008-08-26,
纸质出版日期:2008-11-20
移动端阅览
唐蓉, 何志群, 穆林平, 王俊玲, 王永生, 梁春军, 庄启昕, 吴平平, 韩哲文. 聚苯撑苯并双噁唑的电致发光[J]. 发光学报, 2008,29(6): 950-956
TANG Rong, HE Zhi-qun, MU Lin-ping, WANG Jun-ling, WANG Yong-sheng, LIANG Chun-jun, ZHUANG Qi-xin, WU Ping-ping, HAN Zhe-wen. Electroluminescence from Conjugated Polyphenylenebenzobisoxazole [J]. Chinese Journal of Luminescence, 2008,29(6): 950-956
唐蓉, 何志群, 穆林平, 王俊玲, 王永生, 梁春军, 庄启昕, 吴平平, 韩哲文. 聚苯撑苯并双噁唑的电致发光[J]. 发光学报, 2008,29(6): 950-956 DOI:
TANG Rong, HE Zhi-qun, MU Lin-ping, WANG Jun-ling, WANG Yong-sheng, LIANG Chun-jun, ZHUANG Qi-xin, WU Ping-ping, HAN Zhe-wen. Electroluminescence from Conjugated Polyphenylenebenzobisoxazole [J]. Chinese Journal of Luminescence, 2008,29(6): 950-956 DOI:
通过光谱技术、电化学特性等对聚苯撑苯并双噁唑(PBO)的性能进行了系统研究.通过电化学分析获得该聚合物最高占有分子轨道能级(HOMO)大约为
E
HOMO
=5.69eV
通过光谱分析计算得到最低空轨道能级(LUMO)大约为
E
LUMO
=2.99eV.PBO的溶液光致发光在430~500nm范围
呈现明显的浓度效应;其薄膜的光致发光峰大约位于500nm.研究制作了以PBO为发光层的单层电致发光器件ITO/PBO(60nm)/Al和双层电致发光器件ITO/CuPc(25nm)/PBO(60nm)/Al
其电致发光峰位具有聚集态发光的特征.器件的发光亮度和稳定性在双层器件中获得提高
器件的发光峰位随驱动电压大小在520~555nm范围变化.
Photophysical
electrochemical and optoelectronic properties of a conjugated polymer
poly (p-phenylene benzobisoxazole)(PBO) were investigated.Due to its delocalized π electrons in chemical structure
thematerial is low in solubility
excellent in thermo-oxidative stabilities and mechanical properties; it becomes increasingly important inmany applications.This work focused on the photophysicalproperties
in particular the luminescence property of PBO and its preliminary lightemitting device fabrication.The properties of thematerialwere investigated using absorption
and luminescence spectrometries
cyclic voltammetry.Photoluminescence from PBO solutionwere in the range of 430~500 nm.Concentration dependencewas observed.Photoluminescence of the film peaked at 500 nm.Itwas indicated that the emission shift from solutions is due to the intermolecular interaction.Through electro-chemical analysis of the polymer the highestlevel occupied molecular orbital (HOMO) is about
E
HOMO
=5.69eV
through spectral analysis the lowestunoccupiedmolecularorbital energy (LUMO) is about
E
LUMO
=2.99eV.Singlelayer and double-layer lightemitting deviceswere prepared
which have structures as follows: (a)ITO/PBO(60 nm)/Al for the single-layerdevice
and (b)ITO/CuPc(25 nm)/PBO(60 nm)/Al double-layer device.Their currentvoltage characteristicswere analyzed and compared.Although CuPc absorbed in visible
itshowed a transmittedwindow around green spectral range.This allows the light from the device through as it emitted in green around 520 nm.Brightness and stabilityweremuch improved in double-layerdevices.However a voltage-dependentcolour changewas observed for the doublelayerdevice.The electroluminescence intensity is increased as the voltage increase
which reaches amaximum at 21V.The red shift isobserved in the emission spectra as the driving voltage increased.It is predicted that thismay be related to excitation state of PBO at the different field strength
which requires further investigation in the future.
0
浏览量
79
下载量
0
CSCD
关联资源
相关文章
相关作者
相关机构