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首页> 外文期刊>Inorganic Chemistry Communications >Haloplumbate hybrids with organically coordinated halometal complexes as templates and mixed halo atoms: Solvothermal syntheses, crystal structures, and optical properties
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Haloplumbate hybrids with organically coordinated halometal complexes as templates and mixed halo atoms: Solvothermal syntheses, crystal structures, and optical properties

机译:具有有机配位卤化物络合物作为模板和混合卤原子的卤铅酸盐杂化物:溶剂热合成,晶体结构和光学性质

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摘要

Inorganic-organic hybrids with mixed halo atoms or organically coordinated halometal-complex cations are rare. A series of haloplumbate hybrids with these structural features, [Cu(phen)2Cl]_n(PbCl3)n (phen = 1,10-phenanthroline) (1), [Cu(phen)2Cl]_n[PbClI(Cl_(0.5)I_(0.5))]_n (2), and [Cu(phen)2I]_n(PbI3)_n (3), have been solvothermally synthesized using phen coordinated halocopper(II) complexes as templates and balance cations. Their haloplumbate ions all show 1-D chain structures. Compounds 1-3 feature the hybridization of inorganic-organic hybrids: 1) their absorption edges fall in the range of those of semiconductors, which is typical for bulk lead(II) halides, but show a red shift compared with those of the latter; 2) bulk lead(II) halides are nonluminous upon UV irradiation, but introduction of the phen coordinated halocopper(II) complexes as templates enable the hybrids to emit blue light. Their luminescent intensities gradually decrease with the increase of I content, which indicates the potential to design and syntheses of new luminescent halide materials by means of variation of halo atoms and that iodoplumbates are not good candidates for luminescent materials.
机译:具有混合的卤原子或有机配位的卤金属络合物阳离子的无机-有机杂化物很少见。具有这些结构特征的一系列卤铝酸盐杂化物,[Cu(phen)2Cl] _n(PbCl3)n(phen = 1,10-菲咯啉)(1),[Cu(phen)2Cl] _n [PbClI(Cl_(0.5) I_(0.5))] _ n(2)和[Cu(phen)2I] _n(PbI3)_n(3)已使用phen配位卤化铜(II)配合物作为模板和平衡阳离子进行溶剂热合成。它们的卤铅酸根离子均显示1-D链结构。化合物1-3的特征是无机-有机杂化物的杂交:1)它们的吸收边缘在半导体的吸收边缘范围内,这对于块状卤化铅(II)是典型的,但与后者的吸收边缘相比显示出红移; 2)散装的卤化铅(II)在紫外线照射下是不发光的,但是引入phen配位的卤化铜(II)配合物作为模板使杂种能够发出蓝光。随着I含量的增加,它们的发光强度逐渐降低,这表明通过改变卤原子来设计和合成新的发光卤化物材料的潜力,并且碘代铅酸盐不是发光材料的良好候选者。

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