School of Chemical Science and Engineering, Tongji University, Shanghai 200092, China.
School of Chemical Science and Engineering, Tongji University, Shanghai 200092, China.
J Colloid Interface Sci. 2018 Mar 1;513:133-140. doi: 10.1016/j.jcis.2017.11.017. Epub 2017 Nov 7.
This paper tries to prepare soft ionogels through the carboxyl ion liquid (IMBr) as double chemical linker connecting both Bio-MOF-1 (Zn(ad)(BPDC)O·2MeNH, BPDC=biphenyl-4,4'-dicarboxylate, Ad = adeninate) and lanthanide complexes. Among anionic Bio-MOF-1 interacts with IMBr through cation exchange (IM) to form BMOF-IM and lanthanide ions are further introduced through the coordination to the carboxylic group of IM together with Phen (1,10-phenanthroline) as assistant ligand for Ln (Ln = Eu, Tb or Eu/Tb). The resulting multi-component hybrid ionogels (Phen-Ln-IM@BMOF) are prepared and characterized by PXRD, FTIR, TGA and mechanical properties by compression experiment, respectively. The photophysical properties of these hybrid systems are studied in details. By controlling the composition of different Ln cations in IM@BMOF, the luminescent color of them can be tuned and the white light output can be realized. Furthermore, with careful adjustment of the excitation wavelength, the color of the luminescence can be modulated. Eventually we obtain luminescence trichromatic (Phen-Eu/Tb-IM@BMOF) white-light-emitting materials. Moreover, we try to choose Phen-Eu-IM@BMOF hybrid system for the detection of organic volatile substances, which shows the apparent luminescence quenching effect on ammonia for high sensitivity of sensing.
本文试图通过羧基离子液体(IMBr)作为双化学连接剂,将生物 MOF-1(Zn(ad)(BPDC)O·2MeNH,BPDC=biphenyl-4,4'-dicarboxylate,Ad = adeninate)和镧系元素配合物制备成柔软的离子凝胶。带负电荷的生物 MOF-1 通过阳离子交换(IM)与 IMBr 相互作用,形成 BMOF-IM,镧系元素离子通过与 IMBr 中的羧基配位,同时使用 Phen(1,10-邻菲罗啉)作为辅助配体与 Ln(Ln = Eu、Tb 或 Eu/Tb)进一步引入。通过压缩实验分别采用 PXRD、FTIR、TGA 和机械性能对得到的多组分杂化离子凝胶(Phen-Ln-IM@BMOF)进行了表征。详细研究了这些杂化体系的光物理性质。通过控制 IM@BMOF 中不同 Ln 阳离子的组成,可以调节它们的发光颜色,实现白光输出。此外,通过仔细调整激发波长,可以调节发光的颜色。最终我们获得了发光三基色(Phen-Eu/Tb-IM@BMOF)白光发光材料。此外,我们尝试选择 Phen-Eu-IM@BMOF 杂化体系来检测有机挥发性物质,该体系对氨气表现出明显的发光猝灭效应,具有高灵敏度的传感性能。