Liu Xiao-Jing, Zhang Ying-Hui, Chang Ze, Li Ai-Lin, Tian Dan, Yao Zhao-Quan, Jia Yan-Yuan, Bu Xian-He
School of Materials Science and Engineering, TKL of Metal- and Molecule-Based Material Chemistry and Collaborative Innovation Center of Chemical Science and Engineering (Tianjin), Nankai University , Tianjin 300350, China.
Department of Chemistry, Nankai University , Tianjin 300071, China.
Inorg Chem. 2016 Aug 1;55(15):7326-8. doi: 10.1021/acs.inorgchem.6b00935. Epub 2016 Jul 13.
Water instability is a crucial limiting factor in the practical application of most fluorescent metal-organic frameworks (MOFs). Here, by introducing a fascinating double-helical structure generated through dense stacking of organic ligands, a water-stable fluorescence MOF has been synthesized, namely, [Cd2(tib)2(bda)2]·(solvent)n (1) [tib =1,3,5-tris(1-imidazolyl) benzene; H2bda = 2,2'-biphenyl dicarboxylic acid]. This helical structure helps to enhance the stability of 1 against common organic solvents and water, even acid/base aqueous solutions with a pH value ranging from 3 to 11. Furthermore, this material can be a potential fluorescent sensor for ketones.
水稳定性是大多数荧光金属有机框架材料(MOFs)实际应用中的关键限制因素。在此,通过引入由有机配体密集堆积产生的迷人双螺旋结构,合成了一种水稳定的荧光MOF,即[Cd2(tib)2(bda)2]·(溶剂)n(1)[tib = 1,3,5-三(1-咪唑基)苯;H2bda = 2,2'-联苯二甲酸]。这种螺旋结构有助于提高1对常见有机溶剂和水的稳定性,甚至对pH值范围为3至11的酸/碱水溶液也有稳定性。此外,这种材料可能是一种潜在的酮类荧光传感器。