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On the design of highly luminescent lanthanide complexes

机译:关于高发光镧系元素配合物的设计

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Presently, phosphors and luminescent materials for lighting, telecommunications, displays, security inks and marking, as well as for probes in biosciences represent one third of the total value of the lanthanides used worldwide. If optical glasses and laser materials are added, this figure is close to 40%, explaining the large interest that the scientific community is devoting to such materials. The present review focuses on the design of highly luminescent lanthanide complexes and discusses all aspects needing optimization. Reference is made to the mastering of the various energy migration processes in luminescence sensitization by organic ligands, to minimizing non-radiative deactivation mechanisms, as well as to other parameters such as the radiative lifetime, the refractive index, and the benefit of inserting luminescent complexes into inorganic-hybrid structures. Comparative tables list the most luminescent complexes emitting in the visible and near-infrared ranges and the best chromophores are pointed out. (C) 2014 Elsevier B.V. All rights reserved.
机译:目前,用于照明,电信,显示器,安全油墨和标记以及生物科学探针的磷光体和发光材料占全球镧系元素总价值的三分之一。如果加上光学玻璃和激光材料,这个数字接近40%,这说明了科学界对这种材料的极大兴趣。本综述着重于高发光镧系元素配合物的设计,并讨论了需要优化的所有方面。参考了有机配体在发光敏化中掌握各种能量迁移过程,最小化非辐射失活机理以及其他参数,例如辐射寿命,折射率和插入发光络合物的好处。变成无机杂化结构。比较表列出了在可见光和近红外范围内发射的最多的发光配合物,并指出了最好的发色团。 (C)2014 Elsevier B.V.保留所有权利。

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