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Emergence of multiple fluorophores in individual cesium lead bromide nanocrystals

机译:单个铯溴化铅纳米晶体中多种荧光团的出现

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摘要

Cesium-based perovskite nanocrystals (PNCs) possess alluring optical and electronic properties via compositional and structural versatility, tunable bandgap, high photoluminescence quantum yield and facile chemical synthesis. Despite the recent progress, origins of the photoluminescence emission in various types of PNCs remains unclear. Here, we study the photon emission from individual three-dimensional and zero-dimensional cesium lead bromide PNCs. Using photon antibunching and lifetime measurements, we demonstrate that emission statistics of both type of PNCs are akin to individual molecular fluorophores, rather than traditional semiconductor quantum dots. Aided by density functional modelling, we provide compelling evidence that green emission in zero-dimensional PNCs stems from exciton recombination at bromide vacancy centres within lead-halide octahedra, unrelated to external confinement. These findings provide key information about the nature of defect formation and the origin of emission in cesium lead halide perovskite materials, which foster their utilization in the emerging optoelectronic applications.
机译:铯基钙钛矿纳米晶体(PNC)通过成分和结构的多功能性,可调节的带隙,高的光致发光量子产率和便捷的化学合成,具有诱人的光学和电子特性。尽管有最新进展,但各种类型的PNC中光致发光发射的起源仍不清楚。在这里,我们研究了单个三维溴化铯铯PNC的光子发射。使用光子反聚束和寿命测量,我们证明两种PNC的发射统计数据都类似于单个分子荧光团,而不是传统的半导体量子点。在密度泛函模型的帮助下,我们提供了令人信服的证据,即零维PNC中的绿色发射源于八面体铅卤化物内溴化物空位中心处的激子复合,与外部约束无关。这些发现提供了关于卤化铯铅钙钛矿材料中缺陷形成的性质和发射起源的关键信息,这些信息促进了它们在新兴的光电应用中的利用。

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