Organotin compounds bearing C3-symmetric Schiff base: Microwave-assisted multicomponent synthesis and their photophysical properties

化学 席夫碱 量子产额 荧光 单层 产量(工程) 质谱法 扫描隧道显微镜 结晶学 光化学 分子 有机化学 纳米技术 生物化学 材料科学 量子力学 物理 色谱法 冶金
作者
Arelly M. Cantón-Díaz,Blanca M. Muñoz‐Flores,Jessica C. Berrones‐Reyes,Ivana Moggio,Eduardo Arias,Gleb Turlakov,Rosa Santillán,Víctor M. Jiménez‐Pérez
出处
期刊:Journal of Organometallic Chemistry [Elsevier]
卷期号:954-955: 122111-122111 被引量:7
标识
DOI:10.1016/j.jorganchem.2021.122111
摘要

• New two organotin derivatives of C 3 - symmetry Schiff bases were obtained by microwave-assisted multicomponent synthesis. • Both organotin complexes exhibit good quantum yields in solution and thermally stable up to 300°C. • The photophysical, electrochemical, and theoretical studies reveal that the three Sn-nuclei do not electronically interact. Two new fluorescent organotin compounds bearing C 3 -symmetric Schiff base were synthesized by microwave irradiation via multicomponent reaction (3-MCR), in one pot in just 30 mins with excellent yields. Both tin complexes were fully characterized by NMR, IR, UV-vis, fluorescence spectroscopy, high-resolution mass spectrometry and by ciclyc voltametry. The δ 119 Sn and 3 J ( 1 H, 119 Sn) of new organotin complexes 4 and 5 showed the high molecular symmetry and the trinuclearity through high resolution mass spectrometry. Both Sn-complexes are thermally stable up to 300°C. The small-wide angle X-ray scattering pattern in powder and the 2D monomolecular film by scanning tunneling microscopy (STM) of 5 showed a lamellar like assembly with dimension of 2.38 and 2.80 nm, respectively, meaning that molecules adopt a face-on arrangement, where molecules are flat-lying on the HOPG surface. Monolayer of 5 is mesoporous and rigid but covers large surface areas. The photophysical, electrochemical, and theoretical studies reveal that the three Sn-nuclei do not electronically interact. Since, both organotin complexes exhibit good quantum yield in solution (Φ 4 : 52.4 % and 5 : 51.7 %), with lifetimes in the range τ =∼3 ns, their emission properties are appealing for OLED applications.
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