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Low-power photon upconversion in organic glasses

机译:有机玻璃中的低功率光子上转换

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Green-to-blue upconverting molecular glasses consisting of a metal octaethylporphyrin (MOEP, M = Pd, Pt) sensitizer and 9-(4-hydroxy-methylphenyl)-10-phenyl anthracene (DPA-CH2OH) as an emitter are reported. In these materials, incident light is transformed into higher-energy radiation by way of triplet-triplet annihilation upconversion. The DPA-CH2OH-MOEP mixtures form transparent glasses when cooled from the thermally stable melt, even at rates as low as 1 °C min~(-1). In a systematic study, the PdOEP concentration was varied from 0.025 to 6.6 mol%. The normalized upconverted light intensity decreased with increasing sensitizer concentration by almost three orders of magnitude, as a result of sensitizer aggregation. The upconverted light intensity also decreased upon deliberate crystallization of the upconverting materials. Beyond demonstrating the first embodiment of upconversion in molecular glasses, the results highlight the importance of morphology control in solid-state upconverting materials.
机译:据报道,由金属八乙基卟啉(MOEP,M = Pd,Pt)敏化剂和9-(4-羟基-甲基苯基)-10-苯基蒽(DPA-CH2OH)组成的绿到蓝上转换分子玻璃。在这些材料中,入射光通过三重态-三重态an灭上转换而转变为高能辐射。当从热稳定的熔体中冷却时,DPA-CH2OH-MOEP混合物可形成透明玻璃,即使速率低至1°C min〜(-1)。在一项系统研究中,PdOEP的浓度从0.025到6.6 mol%不等。由于敏化剂聚集,归一化的上转换光强度随着敏化剂浓度增加几乎三个数量级而降低。在上转换材料的故意结晶时,上转换的光强度也降低。除了说明分子玻璃中上转换的第一个实施方案外,结果还强调了形态控制在固态上转换材料中的重要性。

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