论文标题
钙钛矿纳米晶体中的部分闪亮的三胞胎激子
Partially-Bright Triplet Excitons in Perovskite Nanocrystals
论文作者
论文摘要
光电的进步需要开发具有新颖和工程特征的材料。一类引起极大兴趣的材料是金属壁钙化物,这是由于钙钛矿太阳能电池的光伏效率刺激的刺激。此外,最近的进步已在发光设备中应用钙钛矿纳米晶体(NCS)。最近发现,对于高甲酯钙钛矿NCS,它们的异常有效的光发射可能是由于由三个明亮的三胞胎状态组成的独特的激子细胞结构,该结构与三个明亮的三胞胎状态组成,这些结构与近端的深色单元状态相互作用。为了研究这种精细结构而不隔离单个NC,我们在低温温度下使用多维相干光谱,以揭示涉及CSPBI $ _3 $ NC ENSEMEL的三重态的连贯性。二秒时尺度的分类时间是针对三重态和三个间相干相干的测量,我们从中推断出一个独特的激子精细结构级别订购,该级别由一个在明亮的三重态歧管内的黑暗状态组成。
Advances in opto-electronics require the development of materials with novel and engineered characteristics. A class of materials that has garnered tremendous interest is metal-halide perovskites, stimulated by meteoric increases in photovoltaic efficiencies of perovskite solar cells. In addition, recent advances have applied perovskite nanocrystals (NCs) in light-emitting devices. It was discovered recently that, for cesium lead-halide perovskite NCs, their unusually efficient light-emission may be due to a unique excitonic fine-structure composed of three bright triplet states that minimally interact with a proximal dark singlet state. To study this fine-structure without isolating single NCs, we use multi-dimensional coherent spectroscopy at cryogenic temperatures to reveal coherences involving triplet states of a CsPbI$_3$ NC ensemble. Picosecond timescale dephasing times are measured for both triplet and inter-triplet coherences, from which we infer a unique exciton fine-structure level-ordering comprised of a dark state energetically positioned within the bright triplet manifold.