两种锡(IV)蒽-9-羧酸配合物的晶体结构和光学特性及其在oled中的应用

IF 2.2 4区 化学 Q3 CHEMISTRY, MULTIDISCIPLINARY
Ezzatollah Najafi, Mohammad Janghouri, Soma Majedi
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引用次数: 0

摘要

用支管法将氯化锡与蒽-9-羧酸(HL1)、1,2-二(4-吡啶基)乙烷(4-bpe)和2,5-二(4-吡啶基)-3,4-二氮杂-2,4-己二烯(4-bpdh)反应,合成了两个锡(IV)-羧酸配合物1和2。该配合物具有显著的发光性能和独特的结构特征。通过1H NMR、IR、UV光谱和元素分析对其进行综合表征,x射线单晶分析确定其分子结构。配合物1和2的晶体结构主要由两个组分组成:一个阴离子和一个阳离子。在这些结构中,L1采用syn-syn双齿桥接配位模式,利用来自羧酸基的两个氧原子。光学分析强调了辅助配体对配合物1和配合物2光学性质微调的关键作用。化合物2作为有机发光二极管(OLED)的发光层(LEL),在此对其电学性能进行了评估。OLED实现了6550 cd/m2的亮度和7.2 lm/W的最大功率效率,代表了锡基OLED的最高效率记录。该装置在约7伏的驱动电压下工作。这些结果表明,这类化合物具有OLED生产的潜力,在不同电压范围内提供稳定的量子效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The crystal structure and optical characteristics of two tin(IV) anthracene-9-carboxylate complexes and their use in OLEDs

The crystal structure and optical characteristics of two tin(IV) anthracene-9-carboxylate complexes and their use in OLEDs

The synthesis of two tin(IV)-carboxylate coordination complexes, 1 and 2, was achieved through the reaction of stannic chloride with anthracene-9-carboxylic acid (HL1), 1,2-bis(4-pyridyl)ethane (4-bpe), and 2,5-bis(4-pyridyl)-3,4-diaza-2,4-hexadiene (4-bpdh) using a branched tube method. The complexes exhibited remarkable luminescent properties and unique structural characteristics. Comprehensive characterization was carried out through 1H NMR, IR, UV spectroscopy, and elemental analysis, while X-ray single-crystal analysis was used to determine their molecular structures. The crystal structures of complexes 1 and 2 primarily consist of two components: a complex anion and a cation. In these structures, L1 employs a syn-syn bidentate bridging coordination mode, utilizing two oxygen atoms from the carboxylate group. Optical analysis emphasized the crucial role of auxiliary ligands in fine-tuning the optical properties of complexes 1 and 2. Compound 2 served as the light-emitting layer (LEL) in an organic light-emitting diode (OLED), where its electrical performance was evaluated. The OLED achieved a luminance of 6550 cd/m2 and a maximum power efficiency of 7.2 lm/W, representing the highest efficiency recorded for tin-based OLEDs. The device functioned at a driving voltage of around 7 V. These results indicate that this class of compounds holds potential for OLED production, providing stable quantum efficiency across different voltage ranges.

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来源期刊
CiteScore
4.40
自引率
8.30%
发文量
230
审稿时长
5.6 months
期刊介绍: JICS is an international journal covering general fields of chemistry. JICS welcomes high quality original papers in English dealing with experimental, theoretical and applied research related to all branches of chemistry. These include the fields of analytical, inorganic, organic and physical chemistry as well as the chemical biology area. Review articles discussing specific areas of chemistry of current chemical or biological importance are also published. JICS ensures visibility of your research results to a worldwide audience in science. You are kindly invited to submit your manuscript to the Editor-in-Chief or Regional Editor. All contributions in the form of original papers or short communications will be peer reviewed and published free of charge after acceptance.
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