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首页> 外文期刊>Analytical chemistry >Triple-Wavelength-Region Luminescence Sensing Based on a Color-Tunable Emitting Lanthanide Metal Organic Framework
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Triple-Wavelength-Region Luminescence Sensing Based on a Color-Tunable Emitting Lanthanide Metal Organic Framework

机译:基于颜色可调发光镧系有机框架的三维波长区域发光感测

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A series of isomorphic lanthanide metal-organic frameworks (Ln-MOFs), namely [Ln(dcbba)(DMF)(2)](n)center dot H2O.0.5DMF [Ln = La (1), Eu (2) and Tb (3); H(3)dcbba = 4-(3, 5-dicarboxy)-benzyloxy)benzoic acid; DMF = N,N'-dimethylformamide] have been designed and synthesized by the solvothermal reactions of H3dcbba and La(NO3)(3)center dot H2O. Single-crystal X-ray diffraction analysis reveals that the complexes 1-3 exhibit a (3,6)-connected open framework structure with binuclear [Ln(2)(COO)(6)], secondary building units as 6-connected nodes and H3dcbba ligands as 3-connected nodes. The isostructural mixed La/Eu/Tb-dcbba (4) was obtained via the in-suit doping of different Ln(3+) ions into the host framework, which is able to emit pure orange, white, and blue light when excited at 300, 305, and 350 nm, respectively. Subsequently, a novel and multifunctional sensing process was designed based on the excitation wavelength sensitive color tunable luminescent sample 4, which can detect HS- ions, THE (tetrahydrofuran), and Ag+ ions via different luminescence color change mechanisms. The remarkable color change, excellent selectivity, and high sensitivity further indicate the promise of this type of multifunctional luminescent materials for the sensing of anion, cation, and organic small molecule.
机译:一系列同构镧系金属 - 有机骨架(LN-MOF),即[LN(DCBBA)(DMF)(2)](n)中心点H2O.0.5DMF [LN = LA(1),EU(2)和TB(3); H(3)DCBBA = 4-(3,5-二羧酸) - 苄氧基)苯甲酸; DMF = N,N'-二甲基甲酰胺]已经通过H3DBBA和LA(NO3)(3)中心点H2O的溶剂热反应而设计和合成。单晶X射线衍射分析表明,复合物1-3表现出(3,6)连接的开放框架结构,其中二核[LN(2)(COO)(6)],二次建筑单元作为6个连接的节点和H3DCBBA配体作为3个连接的节点。通过将不同LN(3+)离子的适合掺杂进入主机框架,获得IsoStrontuctuctuctureLa / Eu / TB-DCBBA(4),该框架能够在兴奋时发射纯橙色,白色和蓝光300,305和350nm。随后,基于激发波长敏感颜色可调发光样品4设计了一种新颖和多功能传感过程,其可以通过不同的发光颜色变化机构检测HS-ICO,(四氢呋喃)和Ag +离子。显着的颜色变化,优异的选择性和高灵敏度进一步表明了这种类型的多功能发光材料的承诺,用于感测阴离子,阳离子和有机小分子。

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