Langmuir. 2018 Jun 5;34(22):6367-6375. doi: 10.1021/acs.langmuir.8b00283. Epub 2018 May 25.
In this work, three-dimensional nanoflowers with tunable fluorescent properties constructed with mixed Weakley-type polyoxometalates (POMs, Na[LnWO]·32HO, Ln = Eu, Tb, abbreviated to LnW) and tetraethylenepentamine (TEPA) have been successfully prepared through a facile ionic self-assembly (ISA) method. The shape and petal size of the nanoflower as well as its fluorescent behaviors can be tuned through varying the ratio of EuW/TbW. The varied-temperature emission behaviors at 80-260 K show that the fluorescent intensity of both Tb and Eu decreased with the increase in temperature, which makes them potential luminescent ratiometric thermometers. Moreover, after being mixed with polydimethylsiloxane (PDMS), the as-formed hybrid films showed stable fluorescence along with good transparency. The robustness of the hybrid films was also demonstrated by corrosion resistance upon treatment with strong acid and alkali and thus can be used as a sensor to detect toluene circularly. Our results provide a new avenue to the facile construction of fluorescent composites and demonstrate that the POM complexes can be further used in supramolecular chemistry and nanomaterials.
在这项工作中,通过简便的离子自组装(ISA)方法成功制备了具有可调荧光性质的三维纳米花,其由混合的 Weakley 型多金属氧酸盐(POM,Na[LnWO]·32H2O,Ln = Eu,Tb,缩写为 LnW)和四乙烯五胺(TEPA)构建。通过改变 EuW/TbW 的比例,可以调整纳米花的形状和花瓣尺寸以及其荧光行为。在 80-260 K 的变温发射行为表明,Tb 和 Eu 的荧光强度均随温度升高而降低,这使它们成为潜在的发光比率温度计。此外,与聚二甲基硅氧烷(PDMS)混合后,形成的混合薄膜具有稳定的荧光和良好的透明度。混合薄膜的坚固性还通过耐强酸和强碱处理得到了证明,因此可作为检测甲苯的循环传感器使用。我们的结果为简便构建荧光复合材料提供了新途径,并证明 POM 配合物可进一步用于超分子化学和纳米材料。