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The Photostability of Novel Boron Hydride Blue Emitters in Solution and Polystyrene Matrix

机译:新型硼氢化物蓝发射溶液和聚苯乙烯基质的光稳定性

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摘要

In recent work, the boron hydride anti-B18H22 was announced in the literature as a new laser dye, and, along with several of its derivatives, its solutions are capable of delivering blue luminescence with quantum yields of unity. However, as a dopant in solid polymer films, its luminescent efficiencies reduce dramatically. Clarification of underlying detrimental effects is crucial for any application and, thus, this contribution makes the initial steps in the use of these inorganic compounds in electrooptical devices based on organic polymer thin films. The photoluminescence behavior of the highly luminescent boron hydrides, anti-B18H22 and 3,3′,4,4′-Et4-anti-B18H18, were therefore investigated. The quantum yields of luminescence and photostabilities of both compounds were studied in different solvents and as polymer-solvent blends. The photophysical properties of both boranes are evaluated and discussed in terms of their solvent-solute interactions using photoluminescence (PL) and NMR spectroscopies. The UV degradability of prepared thin films was studied by fluorimetric measurement. The effect of the surrounding atmosphere, dopant concentration and the molecular structure were assessed.
机译:在最近的工作中,将硼氢化物抗B18H22在文献中被宣布为新的激光染料,以及其几种衍生物,其解决方案能够以量子的团结产量提供蓝色发光。然而,作为固体聚合物薄膜中的掺杂剂,其发光效率显着减少。阐明潜在的不利影响对于任何应用至关重要,因此,该贡献使得在基于有机聚合物薄膜的电光装置中使用这些无机化合物的初始步骤。因此研究了高发光硼氢化物,抗B18H22和3,3',4,4'-ET4-抗B18H18的光致发光行为。在不同的溶剂中研究了两种化合物的量子型发光和光稳定性,并作为聚合物 - 溶剂共混物。在使用光致发光(PL)和NMR光谱的溶剂溶质相互作用方面评估和讨论两种硼烷的光物理性质。通过荧光测量研究制备薄膜的UV可降解性。评估周围大气,掺杂剂浓度和分子结构的影响。

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