...
首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Perylene Diimide-Based Hj- and hJ-Aggregates: The Prospect of Exciton Band Shape Engineering in Organic Materials
【24h】

Perylene Diimide-Based Hj- and hJ-Aggregates: The Prospect of Exciton Band Shape Engineering in Organic Materials

机译:基于Perylene二酰亚胺的HJ-和HJ-骨料:有机材料中激子带状工程的前景

获取原文
获取原文并翻译 | 示例
           

摘要

The exciton band dispersion in pi-stacks of conjugated organic chromophores is a critical factor in determining the photophysical response and transport properties. In such stacks, the exciton band width and, in particular, the curvature at the band center, is determined by an interference between short-range coupling due to wave function overlap and long-range Coulomb coupling arising from transition dipole-dipole interactions. The interference can be completely destructive, yielding a dispersionless "flat" band resulting in an unusual situation where the aggregate displays monomer-like properties, despite having closely spaced chromophores. Coupled chromophores such as these are called "null aggregates" and the perfect balance of interactions that leads to them are referred to as "null points". Here, we study two perylene diimide (PDI) derivatives where positive long-range coupling induces H-aggregate behavior, whereas counteracting short-range coupling induces J-aggregate behavior. As such, both derivatives display so-called HJ-aggregate properties but are shown here to straddle a null point. In N-phenyl PDI pi-stacks, the stronger Coulomb coupling tilts the scales in favor of overall H-like behavior resulting in Hj-aggregates, characterized by a weak 0-0 vibronic photoluminescence (PL) peak, which increases with temperature. By contrast, in tetraphenyl PDI pi-stacks, the short-range coupling dominates, resulting in hJ-aggregates, as characterized by dominant 0-0 emission. Furthermore, in tetraphenyl PDI, the 0-0/0-1 PL ratio remains approximately twice the monomer value, independent of temperature, indicating strong Peierls-like dimerization. Identifying the null points in PDI derivatives provides reference geometries for band shape engineering through, for example, chemically induced or pressure induced changes in molecular packing.
机译:在缀合的有机发色团的PI-堆叠中的激子带分散体是确定光学响应和运输特性的关键因素。在这种堆叠中,激子带宽和频带中心处的曲率,尤其是由于来自转变偶极子 - 偶极相互作用而产生的波函数重叠和远程库仑耦合而导致的短距离耦合与远程库仑耦合之间的干扰来确定。干扰可以是完全破坏性的,产生一个分散的“平坦”频带,导致绝对的情况,尽管具有紧密间隔的发色团,但聚集体会显示单体样性能。偶联的发色团如这些称为“null聚合”,并且导致它们的相互作用的完美平衡被称为“空点”。在这里,我们研究了两种二酰亚胺(PDI)衍生物,其中正远程耦合诱导H-骨料行为,而抵消短程耦合诱导J-骨料行为。因此,两个衍生品都显示所谓的HJ聚合属性,但是这里被示出以跨越空点。在N-苯基PDI PI叠层中,较强的库仑偶联倾斜尺寸,所述尺度有利于导致HJ聚集体的总体H样行为,其特征在于弱0-0振动光致发光(PL)峰值,其随温度而增加。相比之下,在四苯基PDI PI叠层中,短距离耦合主导,导致HJ聚集体,其特征在于优势0-0发射。此外,在四苯基PDI中,0-0 / 0-1的PL比保持大约两倍的单体值,与温度无关,表明强PEIERLS样二聚化。识别PDI衍生物中的空点提供用于带状工程的参考几何形状,例如化学诱导或分子包装中的压力诱导变化。

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