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国家自然科学基金(60706017)

作品数:3 被引量:8H指数:2
相关作者:孙瑞娟解令海李杰伟黄维顾菊芬更多>>
相关机构:南京邮电大学更多>>
发文基金:国家自然科学基金国家重点基础研究发展计划江苏省基础研究计划更多>>
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有机/聚合物π半导体的四元设计原理被引量:4
2010年
从物质结构的角度来看,有机/聚合物半导体是以组合π-轨道为主要电荷载流子输运通道的分子凝聚态固体.其化学本质是π系统,可以通过π-轨道的分子工程技术来巧妙地合成.本文以自己课题组的工作为主线,从物理有机化学的角度,阐述了有机/聚合物半导体设计的基本四要素,即电子结构、空间位阻、构象与拓扑以及超分子弱作用.同时,总结了四个单元要素在有机/聚合物半导体设计方面的研究进展,并展望了四元设计正成为科学家的一种重要思维模式.
解令海常永正顾菊芬孙瑞娟李杰伟赵祥华黄维
关键词:有机半导体共轭聚合物空间位阻超分子作用
A rectifying diode with hysteresis effect from an electroactive hybrid of carbazole-functionalized polystyrene with CdTe nanocrystals via electrostatic interaction被引量:1
2010年
One of the strategies to tune current-voltage behaviors in organic diodes is to combine field-induced charge transfer processes with schottky barrier.According to this principle,a rectifying diode with hysteresis effect was fabricated utilizing a hybrid of electroactive polystyrene derivative covalently tethered with electron-donor carbazole moieties and electrostatic linked with electron-acceptor CdTe nanocrystals.Current-voltage characteristics show an electrical switching behavior with some hysteresis is only observed under a negative bias,with three orders of On/Off current ratio.The hybrid material based rectifier exhibits a rectification ratio of six and its maximum rectified output current is about 5 × 10-5 A.The asymmetric switching is interpreted as the result of both field induced charge transfer and schottky barrier,capable of reducing the misreading of cross-bar memory.Meanwhile,chemical doping of CdTe nanocrystals instead of physical blend favor their uniform dispersion in matrix and stable operation of device.
LIU JuQingQI XiaoYingJIANG TingLIN ZongQiongCHEN ShuFenXIE LingHaiFAN QuLiLING QiDanZHANG HuaHUANG Wei
Effective adjustment of the optoelectronic properties of organic conjugated materials by synthesizing p-n diblock molecules被引量:3
2011年
Because organic conjugated materials offer several advantages relative to their inorganic counterparts,the development of organic conjugated materials has been one of the most active research areas in optoelectronic materials.For almost two decades,the search for organic conjugated materials has represented a major driving force for research concerned with controlling the band gap of extended π-conjugated molecules.In particular,among the parameters affecting the performance of organic light-emitting diodes (OLEDs),the energy levels of organic conjugated materials play an important role because they can affect the driving voltage,wavelength,efficiency,and lifetime of the final device.Balanced injection and transport of electrons and holes are therefore crucial for achieving OLEDs with high quantum efficiency.In this regard,research into adjusting the energy levels of organic conjugated materials is very meaningful for the development of OLEDs.To adjust the energy levels of the organic conjugated materials,Huang et al.have presented a new molecular design and synthesis route that yields p-n diblock conjugated copolymers and oligomers.The present review summarizes and analyzes the progress on adjusting the optoelectronic properties of organic conjugated materials that is due to synthesizing p-n diblock molecules.We discusses primarily work done by Huang et al.,but also discusses work done elsewhere over the past few years.We also point out issues that require attention,and highlight hot spots that require further investigation.
JIANG HongJi
关键词:共轭分子光电性能
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