...
首页> 外文期刊>Organic Electronics >A study of charge transport in a novel electroluminescent poly(phenylene vinylene-co-fluorenylene vinylene)based π-conjugated polymer
【24h】

A study of charge transport in a novel electroluminescent poly(phenylene vinylene-co-fluorenylene vinylene)based π-conjugated polymer

机译:新型电致发光聚苯撑乙烯撑-芴撑乙烯撑π共轭聚合物中电荷传输的研究

获取原文
获取原文并翻译 | 示例
           

摘要

The charge transport properties in a novel electroluminescent poly{[2-(4',5'-bis(3"-methylbutoxy)-2'-p-methoxy-phe-nyl)phenyl-1,4-phenylene vinylene]-co-(9,9-dioctyl-2,7-fluorenylene vinylene)} (BPPPV-PF) have been studied using a time-of-flight (TOF) photoconductivity technique. The TOF transients for holes were recorded over a range of temperatures (207-300 K) and electric fields (1.5×10~5-6.1×10~5 V/cm). The hole transport in this polymer was weakly dispersive in nature with a mobility at 300 K of 5×10~5 cm~2/V s at 2.5×10~5 V/cm. This increased to 8.4×10~(-5) cm~2/V s at 6.1×10~5 V/ cm. The temperature and field dependence of charge mobility has been analyzed using the disorder formalisms (Bassler's Gaussian disorder model (GDM) and correlated disorder model (CDM)). The fit with Gaussian disorder (GDM) model yielded the mobility pre-factor μ_∞ = 1.2×10~(-3) cm~2/V s, energetic disorder parameter σ = 82 meV and positional disorder parameter Σ = 1.73. The average inter-site separation (a = 7 A) and the charge localization length (L = 3.6 A) was estimated by assuming the CDM type charge transport. The microscopic charge transport parameters derived for this polymer are almost identical to the reported values for fully conjugated polymers with high chemical purity. The results presented indicate that the charge transport parameters can be controlled and optimized for organic optoelectronic applications.
机译:新型电致发光聚{[2-(4',5'-双(3“-甲基丁氧基)-2'-对甲氧基-苯甲基)苯基-1,4-亚苯基亚乙烯基] -co的电荷传输性质-(9,9-二辛基-2,7-芴基亚乙烯基)}(BPPPV-PF)已使用飞行时间(TOF)光电导技术进行了研究。在一定温度范围内记录了空穴的TOF瞬变( 207-300 K)和电场(1.5×10〜5-6.1×10〜5 V / cm)。该聚合物中的空穴传输本质上是微分散的,在300 K下的迁移率为5×10〜5 cm〜在2.5×10〜5 V / cm时为2 / V s。在6.1×10〜5 V / cm时为8.4×10〜(-5)cm〜2 / V s。电荷迁移率的温度和电场依赖性使用无障碍形式主义(Bassler高斯障碍模型(GDM)和相关障碍模型(CDM))进行分析,与高斯障碍(GDM)模型的拟合产生了迁移率因子μ_∞= 1.2×10〜(-3)cm 〜2 / V s,能量异常参数σ= 82 meV,位置异常参数Σ= 1.73。 n(a = 7 A)和电荷局部化长度(L = 3.6 A)通过假定CDM型电荷传输来估算。从该聚合物获得的微观电荷传输参数几乎与具有高化学纯度的完全共轭聚合物的报道值相同。给出的结果表明,可以为有机光电应用控制和优化电荷传输参数。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号