Fluorescent Aromatic Polyether Sulfones: Processable, Scalable, Efficient, and Stable Polymer Emitters and Their Single-Layer Polymer Light-Emitting Diodes

Nanomaterials Pub Date : 2024-07-25 DOI:10.3390/nano14151246
Konstantinos C. Andrikopoulos, D. Tselekidou, C. Anastasopoulos, K. Papadopoulos, V. Kyriazopoulos, S. Logothetidis, J. Kallitsis, M. Gioti, A. Andreopoulou
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Abstract

In this study, fully aromatic polyether sulfones were developed, bearing blue, yellow, and orange–red π-conjugated semiconducting units. Carbazole-, anthracene-, and benzothiadiazole-based fluorophores are copolymerized with a diphenylsulfone moiety. A diphenylpyridine comonomer was additionally utilized, acting as both a solubilizing unit and a weak blue fluorescent group. Using this rationale, fluorescent polyarylethers with high molecular weights, up to 70 kDa, were developed, showing film formation ability and high thermal stability, while preserving excellent solubility in common organic, nonvolatile, and nonchlorinated solvents. Fine-tuning of the emission color was achieved through subtle changes of the comonomers’ type and ratio. Single-chromophore-bearing copolymers emitted in the blue or the yellow region of the visible spectrum, while the dual-chromophore-bearing terpolymers emitted throughout the visible spectrum, resulting in white light emission. Solutions of 20 wt% in polar aprotic solvents at ambient conditions allowed the deposition of fluorescent copolyethers and printing from non-chlorinated solvents. All polyethers were evaluated for their structural and optoelectronic properties, and selected copolymers were successfully used in the emitting layer (EML) of organic light-emitting diode (OLED) devices, using either rigid or flexible substrates. Remarkable color stability was displayed in all cases for up to 15 V of bias voltage. The Commission Internationale de L’Eclairage (CIE) of the fabricated devices is located in the blue (0.16, 0.16), yellow (0.44, 0.50), or white region of the visible spectrum (0.33, 0.38) with minimal changes according to the ratio of the comonomers. The versatile methodology toward semiconducting polyethersulfones for polymer light-emitting diodes (PLEDs) developed herein led to the scaled-up production of luminescent polymers of up to 25 g of high-molecular-weight single batches, demonstrating the effectiveness of this approach as a straightforward tool to facilitate the synthesis of flexible and printable EMLs for large-area PLED coverage.
荧光芳香族聚醚砜:可加工、可扩展、高效、稳定的聚合物发光体及其单层聚合物发光二极管
本研究开发了全芳香族聚醚砜,含有蓝色、黄色和橙红色 π 共轭半导体单元。以咔唑、蒽和苯并噻二唑为基础的荧光团与二苯基砜分子共聚。此外,还使用了一种二苯基吡啶共聚物,它既是一种增溶单元,又是一种弱蓝色荧光基团。利用这一原理,我们开发出了分子量高达 70 kDa 的荧光多芳基醚,它们具有成膜能力和高热稳定性,同时在常见的有机、非挥发性和非氯溶剂中保持了出色的溶解性。通过微妙地改变共聚单体的类型和比例,实现了发射颜色的微调。单色素共聚物在可见光谱的蓝色或黄色区域发光,而双色素三元共聚物则在整个可见光谱范围内发光,从而发出白光。在环境条件下,极性钝化溶剂中 20 wt%的溶液可以沉积荧光共聚物,并在无氯溶剂中进行印刷。我们对所有聚醚的结构和光电特性进行了评估,并成功地将选定的共聚物用于有机发光二极管(OLED)设备的发射层(EML),无论是使用刚性基板还是柔性基板。在所有情况下,在高达 15 V 的偏置电压下都显示出显著的色彩稳定性。根据国际照明委员会(CIE)的规定,所制造的器件位于可见光谱的蓝色(0.16, 0.16)、黄色(0.44, 0.50)或白色区域(0.33, 0.38),且根据共聚物的比例变化极小。本文所开发的用于聚合物发光二极管(PLED)的半导体聚醚砜的多功能方法,可按比例生产出单批重量高达 25 克的高分子量发光聚合物,证明了这种方法的有效性,它是促进合成用于大面积 PLED 覆盖的柔性和可印刷 EML 的直接工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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