Wang Ke, Su Hao, Wang Pengfei, Wang Wenjie, Li Hui
Key Laboratory of Cluster Science of Ministry of Education, School of Chemistry and Chemical Engineering, Beijing Institute of Technology Beijing 100081 P. R. China
RSC Adv. 2019 May 8;9(25):14268-14275. doi: 10.1039/c9ra00977a. eCollection 2019 May 7.
An asymmetrical salen-type organic ligand was designed and synthesized by a new strategy developed using a precursor Ac-DMN, which is a diaminomaleonitrile (DMN) incorporated with an acetyl group. In this study, two types of asymmetrical ligands, namely Ac-DMN-salicylaldehyde (L) and Ac-DMN-4-,-diethyl-salicylaldehyde (L), and their Zn(ii) coordination complexes were studied. With the electron-pushing substituent, L showed interesting photoluminescence behaviour distinct from that of L. In a THF solution, the maximum fluorescence emission of L red-shifted to 90 nm compared with that of L. Furthermore, in a THF-HO solution, L exhibited aggregation-induced emission (AIE), but L exhibited aggregation-caused quenching (ACQ). Upon coordination with Zn(ii), the maximum emission wavelengths in THF for both the ligands were red-shifted to 100 nm and 105 nm, respectively. The crystalline solid-state photoluminescence properties were studied based on the single-crystal structural analysis.
通过使用前体Ac-DMN(一种与乙酰基结合的二氨基马来腈(DMN))开发的新策略设计并合成了一种不对称的萨伦型有机配体。在本研究中,研究了两种类型的不对称配体,即Ac-DMN-水杨醛(L)和Ac-DMN-4,6-二乙基-水杨醛(L)及其Zn(ii)配位络合物。由于具有推电子取代基,L表现出与L不同的有趣的光致发光行为。在THF溶液中,L的最大荧光发射与L相比红移至90nm。此外,在THF-H2O溶液中,L表现出聚集诱导发光(AIE),但L表现出聚集导致猝灭(ACQ)。与Zn(ii)配位后,两种配体在THF中的最大发射波长分别红移至100nm和105nm。基于单晶结构分析研究了晶体固态光致发光性质。