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Room-temperature optically detected magnetic resonance of triplet excitons in a pentacene-doped picene single crystal

机译:室温光学检测掺杂五烯芋烯单晶中三重态激子的磁共振

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摘要

The inclusion of functional molecules as substitutional dopants in single crystals of organic hosts with complementary optical properties provides a versatile strategy to tune optical and magnetic properties in view of their applications in opto-electronics and spintronics. Here, by combining electron spin resonance and optical spectroscopy, isolated triplet exciton states with distinct emission and absorptive resonance modes from two magnetically inequivalent sites of pentacene within the picene crystal are detected at room temperature. This is possible due to the incorporation of a low-doping, 1 mol/mol of pentacene into the monoclinic polymorph of picene high-quality single crystals. In addition, delayed fluorescence-optically detected magnetic resonance (ODMR) studies demonstrate efficient spin-dependent optical activities that are tuned by crystallographically oriented magnetic fields. These properties are particularly appealing for the exploitation of pentacene in room-temperature spin-driven opto-electronics, quantum sensing and in microwave amplification by stimulated emission of radiation (MASER).
机译:在具有互补光学特性的有机主体单晶中加入功能分子作为取代掺杂剂,为调节光学和磁学特性提供了一种通用的策略,以适应它们在光电子学和自旋电子学中的应用。在这里,通过结合电子自旋共振和光谱学,在室温下检测到来自芸烯晶体内两个磁性不等效的五苯位点的孤立三重态激子态,具有不同的发射和吸收共振模式。这是可能的,因为将低掺杂的 1% mol/mol 五苯掺入到芸烯高质量单晶的单斜晶型中。此外,延迟荧光光学检测磁共振 (ODMR) 研究表明,有效的自旋依赖性光学活动由晶体定向磁场调节。这些特性对于在室温自旋驱动光电子学、量子传感和受激辐射微波放大(MASER)中开发五苯特别有吸引力。

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