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Optical Gain in Semiconducting Polymer Nano and Mesoparticles

机译:半导体聚合物纳米和中间颗粒中的光学增益

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摘要

The presence of excited-states and charge-separated species was identified through UV and visible laser pump and visibleear-infrared probe femtosecond transient absorption spectroscopy in spin coated films of poly[N-9″-heptadecanyl-2,7-carbazole-alt-5,5-(4,7-di-2-thienyl-2′,1′,3′-benzothiadiazole)] (PCDTBT) nanoparticles and mesoparticles. Optical gain in the mesoparticle films is observed after excitation at both 400 and 610 nm. In the mesoparticle film, charge generation after UV excitation appears after around 50 ps, but little is observed after visible pump excitation. In the nanoparticle film, as for a uniform film of the pure polymer, charge formation was efficiently induced by UV excitation pump, while excitation of the low energetic absorption states (at 610 nm) induces in the nanoparticle film a large optical gain region reducing the charge formation efficiency. It is proposed that the different intermolecular interactions and molecular order within the nanoparticles and mesoparticles are responsible for their markedly different photophysical behavior. These results therefore demonstrate the possibility of a hitherto unexplored route to stimulated emission in a conjugated polymer that has relatively undemanding film preparation requirements.
机译:通过UV和可见激光泵和可见激光泵和可见/近红外探针飞秒瞬态吸收光谱法鉴定激发状态和电荷分离的物种,在聚[N-9“ - α-咔唑-2,7-咔唑的旋涂薄膜中ALT-5,5-(4,7-DI-2-噻吩基-2',1',3'-苯并噻唑)](PCDTBT)纳米颗粒和中胚。在400和610nm的激发后观察中间粒子膜中的光学增益。在中墩膜中,在约50ps之后出现UV激发后的电荷产生,但在可见泵激发后观察到几乎没有。在纳米颗粒膜中,对于纯聚合物的均匀膜,UV激发泵有效地诱导电荷形成,而低能量吸收状态(在610nm处的激发诱导纳米颗粒膜中的大型光学增益区域减少电荷形成效率。提出,纳米颗粒和中胚层内的不同分子间相互作用和分子阶是它们显着不同的光学性行为的原因。因此,这些结果证明了迄今为止未探测的掺入聚合物中的刺激发射的可能性,具有相对未造成的薄膜制备要求。

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