Matussek Marek, Kurpanik-Wójcik Aneta, Gogoc Szymon, Fijołek Aleksandra, Filapek Michał, Naumczuk Beata, Data Przemysław
Institute of Chemistry, University of Silesia, Szkolna 9, 40-006, Katowice, Poland.
Faculty of Chemistry, Silesian University of Technology, Strzody 9, 44-100, Gliwice, Poland.
Chemistry. 2023 Nov 2;29(61):e202302115. doi: 10.1002/chem.202302115. Epub 2023 Sep 25.
Four A-π-D-π-A type small organic molecules with 1,8-naphthalimide motifs were successfully synthesised. The designed compounds are built of two 1,8-naphthalimide units linked via ethynyl π-linkages with selected functionalised donor motifs i. e. 2,2'-bithiophene, fluorene, phenothiazine and carbazole derivative. The synthesis based on Sonogashira cross-coupling allowed us to obtain the presented dyes with good yields. The resulting symmetrical small molecules' optical, electrochemical and thermal properties were thoroughly investigated, and their potential applicability for the OLED devices was demonstrated. In addition, the relationship between molecular structure and properties was considered by employing experimental and theoretical studies. As a result of using various donor groups, it was possible to achieve efficient electroluminescence in the range from green (DEV4) to orange-red light (DEV3) with a maximum luminance of 3 820 cd/m for DEV4. Upon the insertion of an acetylene linker to the designed molecules, the free rotation of D and A fragments, and hence the effective π-electron communication within the entire molecule, is possible, which was confirmed by DFT studies. The obtained dyes are characterised by high thermal stability, reversible oxidation-reduction process, satisfactory optoelectronic properties and good solubility in organic solvents, which is advisable for the application in small molecular organic light-emitting diodes (SM-OLEDs) technology.
成功合成了四种具有1,8-萘二甲酰亚胺基序的A-π-D-π-A型有机小分子。所设计的化合物由两个通过乙炔基π键连接的1,8-萘二甲酰亚胺单元与选定的功能化供体基序(即2,2'-联噻吩、芴、吩噻嗪和咔唑衍生物)构成。基于Sonogashira交叉偶联的合成方法使我们能够以良好的产率获得所呈现的染料。对所得对称小分子的光学、电化学和热性能进行了深入研究,并证明了它们在OLED器件中的潜在适用性。此外,通过实验和理论研究考虑了分子结构与性能之间的关系。由于使用了各种供体基团,实现了从绿色(DEV4)到橙红色光(DEV3)范围内的高效电致发光,DEV4的最大亮度为3820 cd/m²。在设计的分子中插入乙炔连接基后,供体和受体片段能够自由旋转,从而在整个分子内实现有效的π电子通信,这一点通过密度泛函理论(DFT)研究得到了证实。所获得的染料具有高热稳定性、可逆的氧化还原过程、令人满意的光电性能以及在有机溶剂中的良好溶解性,这对于在小分子有机发光二极管(SM-OLEDs)技术中的应用是可取的。