首页> 外文会议>Conference on organic light-emitting materials and devices >Synthesis of TPD-containing polymers for use as light emitting materials in electroluminescent and Laser devices
【24h】

Synthesis of TPD-containing polymers for use as light emitting materials in electroluminescent and Laser devices

机译:用作电致发光和激光装置的发光材料的含TPD聚合物的合成

获取原文

摘要

The synthesis of two families of electrically active and highly luminescent TPD-based copolymers is reported. (1) The HORNER-olefination between TPD-dialdehydes and xylylene bisphosphonates has been used to prepare red and green emitting conjugated TPD-PPV copolymers 1 - 4. Here the TPD (triphenylamine dimer) moieties are brigded through alkoxy-substituted p-phenylene vinylene segments. (2) Blue emitting, nonconjugated TPD-xylylene copolymers (Poly-TPD-DPX 5, 6) have been synthesized by an electrophilic aralkylation using diphenylxylylene diol and TPD as the monomers. All these TPD-copolymers constitute amorphous electro-optical materials possessing remarkably high glass transition temperatures (Tg 110-240 deg C). Here we demonstrate strong lasing in the red, green and blue spectral region employing thin layers (approx 100 nm) of these solution processable polymeric materials. In waveguiding neat films travelling-wave lasing (amplified spontaneous emission -ASE) is achieved upon picosecond pulse excitation at 347 nm. Pump energy density thresholds as low as 3 muJ/cm~2 and ASE-line halfwidths approx 10 nm have been observed. Comparable to the typical redox behaviour of free TPD molecule the novel TPD-based polymers exhibit fully reversible electron transfer at low potential (E~(Ox) approx 0.65 V), which is favourable for hole injection and stable charge transport in the semiconducting organic materials. In addition, these high-Tg polymers can act as the electro-active materials in LEDs, photovoltaic cells and photorefractive devices. The waveguiding properties of Poly-TPD-DPX were determined in planar and strip waveguides to be 12 dB/cm at 640 nm, and 2 dB/cm at 1550 nm.
机译:报道电活性和高度发光基于TPD-共聚物的两个家族的合成。 (1)TPD-二醛和亚二甲苯基二膦酸盐之间的霍纳 - 烯已被用于制备红色和绿色的发光偶联TPD-PPV共聚物1 - 4。这里的TPD(三苯基胺二聚物)部分通过烷氧基取代的对 - 亚苯基亚乙烯基brigded段。 (2)蓝发光的非共轭TPD亚二甲苯基共聚物(聚-TPD-DPX 5,6)已经通过使用diphenylxylylene二醇和TPD作为单体的亲电芳烷基化来合成。所有这些TPD-共聚物构成的无定形的电光材料具有非常高的玻璃化转变温度(Tg 110-240℃)。在这里,我们证明强在采用薄的层,这些可溶液加工的聚合物材料的(约100nm)的红色,绿色和蓝色光谱区发射激光。在波导整齐薄膜的行波激光(放大的自发发射-ase)是在347纳米时皮秒脉冲激发来实现。泵的能量密度阈值低至3 MUJ /厘米〜2和ASE在线半宽度约10纳米已观察到。媲美自由TPD分子的典型的氧化还原行为的新颖的基于TPD的聚合物表现出在低电位完全可逆的电子转移(E〜(OX)约0.65 V),其是用于在半导体有机材料的空穴注入和稳定的电荷输送有利。另外,这些高Tg聚合物可作为在发光二极管,光伏电池和光折变装置的电活性材料。聚-TPD-DPX的波导性质以平面和钢带波导被确定为12分贝/厘米在640nm处,并且在1550纳米2分贝/厘米。

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