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首页> 外文期刊>RSC Advances >Multiplicate sensitization of novel near-infrared luminescent linear copolymers based on Er, Nd and Yb-complexes
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Multiplicate sensitization of novel near-infrared luminescent linear copolymers based on Er, Nd and Yb-complexes

机译:基于Er,Nd和Yb络合物的新型近红外发光线型共聚物的多重敏化

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A series of novel near-infrared (NIR) luminescent linear copolymers, PCzLnQL(2) (Cz_carbazole; Ln_Er, Nd, and Yb; Q = 8-hydroxyquinoline; L = 8-hydroxyquinoline, 5-[(carbazole-9-yl) methyl]-8-hydroxyquinoline and 2-thenoyltrifluoroacetone) covalently linked with Ln-complexes were synthesized and characterized. The obtained copolymers exhibit appropriate molecular weight, good solubility-processability and thermal stability for PLEDs application. The photophysical properties of the copolymers were studied by UV-vis absorption, steady state and transient fluorescence spectra. Monitoring the characteristic emission of the corresponding Ln(3+), the copolymers show a broad excitation band extending from UV light to the region of visible light. Upon excitation with UV-vis light, the copolymers display high efficient near-infrared (NIR) luminescence of the corresponding Ln(3+). Effects of N-vinylcarbazole segments and ligands on the NIR-luminescence of Ln(3+) were investigated carefully. The results indicate that the NVK segments are not only used as light-harvesting groups, but also as a barrier to form a special microenvironment for the Ln-complex moieties. The three ligands can sensitize the three lanthanide ions, but the sensitized efficiency is not identical. Based on the observed luminescence phenomena and the reported energy transfer theories, the energy transfer mechanism for the NIR-luminescence of the copolymers was also investigated, which will provide a rule for designing perfect NIR-luminescence materials.
机译:一系列新型的近红外(NIR)发光线性共聚物PCzLnQL(2)(Cz_咔唑; Ln_Er,Nd和Yb; Q = 8-羟基喹啉; L = 8-羟基喹啉,5-[(咔唑-9-基)合成并表征了与Ln配合物共价连接的甲基] -8-羟基喹啉和2-thenoyltrifluoroacetone)。对于PLED应用而言,所获得的共聚物表现出合适的分子量,良好的溶解性和可加工性以及热稳定性。通过紫外可见吸收,稳态和瞬态荧光光谱研究了共聚物的光物理性质。监测相应的Ln(3+)的特征发射,共聚物显示出从紫外光到可见光区域的宽激发带。在用紫外线可见光激发后,共聚物显示出相应Ln(3+)的高效近红外(NIR)发光。仔细研究了N-乙烯基咔唑片段和配体对Ln(3+)的NIR发光的影响。结果表明,NVK片段不仅用作光捕获基团,而且还用作形成Ln复杂部分的特殊微环境的障碍。这三个配体可以使三个镧系离子增感,但增感效率不同。基于观察到的发光现象和所报道的能量转移理论,还研究了共聚物近红外发光的能量转移机理,这为设计理想的近红外发光材料提供了依据。

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