Department of Chemistry, Tongji University, Shanghai 200092, China.
Dalton Trans. 2014 Feb 21;43(7):2810-8. doi: 10.1039/c3dt52652f.
Eight host-guest assemblies of zeolite A (ZA) and their thin films have been synthesized. The assembly of zeolite A was prepared by first embedding lanthanide complexes (Eu(TTA)n or Tb(TAA)n) into the cages of zeolite A and then grafting lanthanide complexes (Eu(L) or Tb(L), L = bipy or phen) onto the surface of functionalized zeolite A via 3-(methacryloyloxy)propyltrimethoxysilane (γ-MPS). The obtained organic-inorganic hybrid materials were investigated by means of XRD, FT-IR, SEM and luminescence spectroscopy. Firstly, the dependence of the crystal stability of zeolite A as the host of lanthanide complexes on the level of ion exchange was studied by XRD. The results indicated the degradation and partial collapse of zeolite A framework occurred upon doping with high amounts of lanthanide complexes into its channels. The integrity of zeolite A's framework was well maintained after fabrication through careful control of the ion-exchange extent. Secondly, the thin films of zeolite A assemblies obtained this way have the properties of homogeneous dense packing and a high degree of coverage of the crystals on the ITO glass, as shown in SEM images. Thirdly, the luminescence behavior of all the materials were investigated in detail. Among them, four white light-emitting materials from a three-component system that comprises a blue-emitting zeolite A matrix, a red-emitting europium complex and a green-emitting terbium complex were obtained.
已经合成了八种沸石 A(ZA)及其薄膜的主体-客体组装体。沸石 A 的组装体是通过首先将镧系配合物(Eu(TTA)n 或 Tb(TAA)n)嵌入沸石 A 的笼中,然后通过 3-(甲基丙烯酰氧基)丙基三甲氧基硅烷(γ-MPS)将镧系配合物(Eu(L)或 Tb(L),L = bipy 或 phen)接枝到功能化沸石 A 的表面上而制备的。通过 XRD、FT-IR、SEM 和发光光谱对所得有机-无机杂化材料进行了研究。首先,通过 XRD 研究了作为镧系配合物主体的沸石 A 的晶体稳定性对离子交换水平的依赖性。结果表明,在将大量镧系配合物掺杂到其通道中时,沸石 A 骨架发生降解和部分坍塌。通过仔细控制离子交换程度,在制造过程中很好地保持了沸石 A 骨架的完整性。其次,以这种方式获得的沸石 A 组装体的薄膜具有均匀致密堆积的性质,并且晶体在 ITO 玻璃上的覆盖度很高,如 SEM 图像所示。第三,详细研究了所有材料的发光行为。其中,从由蓝色发光沸石 A 基质、红色发光铕配合物和绿色发光铽配合物组成的三组分体系中获得了四种白色发光材料。