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首页> 外文期刊>ACS Omega >Low-Temperature Electron Beam-Induced Transformations of Cesium Lead Halide Perovskite Nanocrystals
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Low-Temperature Electron Beam-Induced Transformations of Cesium Lead Halide Perovskite Nanocrystals

机译:低温电子束诱导的铯卤化铯钙钙钛矿纳米晶体的转化

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Cesium lead halide perovskite (CsPbX_(3), with X = Br, Cl, I) nanocrystals have been found to undergo severe modifications under the high-energy electron beam irradiation of a transmission electron microscope (80/200 keV). In particular, in our previous work, together with halogen desorption, Pb~(2+) ions were found to be reduced to Pb~(0) and then diffused to form lead nanoparticles at temperatures above ?40 °C. Here, we present a detailed irradiation study of CsPbBr_(3) nanocrystals at temperatures below ?40 °C, a range in which the diffusion of Pb~(0) atoms/clusters is drastically suppressed. Under these conditions, the irradiation instead induces the nucleation of randomly oriented CsBr, CsPb, and PbBr_(2) crystalline domains. In addition to the Br desorption, which accompanies Pb~(2+) reduction at all the temperatures, Br is also desorbed from the CsBr and PbBr_(2) domains at low temperatures, leading to a more pronounced Br loss, thus the final products are mainly composed of Cs and Pb. The overall transformation involves the creation of voids, which coalesce upon further exposure, as demonstrated in both nanosheets and nanocuboids. Our results show that although low temperatures hinder the formation of Pb nanoparticles in CsPbBr_(3) nanocrystals when irradiated, the nanocrystals are nevertheless unstable. Consequently, we suggest that an optimum combination of temperature range, electron energy, and dose rate needs to be carefully chosen for the characterization of halide perovskite nanocrystals to minimize both the Pb nanoparticle formation and the structural decomposition.
机译:已经发现,已经发现铯铅卤化铯(Cspbx_(3),具有X = Br,Cl,I)纳米晶体在透射电子显微镜(80/200kev)的高能电子束照射下进行严重修改。特别是,在我们以前的工作中,与卤素解吸一起,发现PB〜(2+)离子被发现减少到Pb〜(0),然后在高于α40℃的温度下扩散以形成铅纳米颗粒。这里,我们在低于α40℃的温度下提供CSPBBR_(3)纳米晶体的详细辐照研究,其中Pb〜(0)原子/簇的扩散在大大抑制的范围内。在这些条件下,辐照诱导随机取向的CSBR,CSPB和PBBR_(2)结晶域的成核。除了在所有温度下伴随PB〜(2+)的BR解吸之外,BR还从低温下从CSBR和PBBR_(2)域解吸,导致更明显的BR损失,因此是最终产品主要由CS和PB组成。整体转化涉及在纳米片和纳米吡咯中所证明的进一步暴露时产生的空隙。我们的结果表明,尽管在照射时,虽然低温阻碍了CSPBBR_(3)纳米晶体中Pb纳米颗粒的形成,但纳米晶体仍然不稳定。因此,我们建议需要仔​​细选择温度范围,电子能量和剂量率的最佳组合以表征卤化物钙钛矿纳米晶体以最小化PB纳米粒子形成和结构分解。

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