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聚合物混合光电设备中可控聚集与发光性能的相关性。

Correlation of Controllable Aggregation with Light-Emitting Property in Polymer Blend Optoelectronic Devices.

机构信息

Department of Material Science and Engineering, Pohang University of Science and Technology (POSTECH), Pohang, 790-784, South Korea.

National Institute for Nanomaterials Technology (NINT), Pohang University of Science and Technology (POSTECH), Pohang, 790-784, South Korea.

出版信息

Small. 2017 Apr;13(14). doi: 10.1002/smll.201602874. Epub 2017 Feb 3.

Abstract

The control of solution-processed emitting layers in organic-based optoelectronic devices enables cost-effective processing and highly efficient properties. However, a solution-based protocol for emitter fabrication is highly complex, and the link between the device performance and internal nanoscale features as well as three associated fabricating parameters (e.g., the employed solvents, annealing temperatures, and molecular concentration) needs to be understood. Here, this study investigates the influence of the solution-processing parameters on the nanostructure-property relationship in light emitters that consist of iridium complexes doped in polymer. The boiling points and evaporation rates of the selected solvents govern the nanomorphology of molecular aggregation in the as-processed state, and the aggregation is either needle-like, spherical, or even a mixture of needles and spheres. Furthermore, a direct observation via in situ heating microscopy indicates that annealing of emitters containing a needle-type aggregation promotes the associated molecular transport, leading to a substantial reduction in the surface roughness. Consequently, a nearly threefold increase in the current efficiency of the device is induced. These findings have important implications for the tuning of the aggregation of iridium complexes for emitters used in the new evolution of high-performance organic-based optoelectronic devices.

摘要

在基于有机的光电设备中,控制溶液处理的发射层可以实现具有成本效益的处理和高效的性能。然而,基于溶液的发射器制造协议非常复杂,需要了解设备性能与内部纳米尺度特征以及三个相关制造参数(例如,所使用的溶剂、退火温度和分子浓度)之间的联系。在这里,本研究调查了溶液处理参数对由聚合物掺杂铱配合物组成的发光体中纳米结构-性能关系的影响。所选溶剂的沸点和蒸发速率决定了分子聚集在加工状态下的纳米形态,聚集形式为针状、球状,甚至是针状和球状的混合物。此外,通过原位加热显微镜进行的直接观察表明,对含有针状聚集的发射器进行退火会促进相关的分子迁移,从而大大降低表面粗糙度。因此,器件的电流效率提高了近三倍。这些发现对于调节用于高性能有机光电设备新发展的铱配合物的聚集具有重要意义。

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