首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Comment on 'Phase transitions, screening and dielectric response of CsPbBr3' by S. Svirskas, S. Balciunas, M. Simenas, G. Usevicius, M. Kinka, M. Velicka, D. Kubicki, M. E. Castillo, A. Karabanov, V. V. Shvartsman, M. R. Soares, V. Sablinskas, A. N. Salak, D. C. Lupascu and J. Banys, J. Mater. Chem. A, 2020, 8, 14015
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Comment on 'Phase transitions, screening and dielectric response of CsPbBr3' by S. Svirskas, S. Balciunas, M. Simenas, G. Usevicius, M. Kinka, M. Velicka, D. Kubicki, M. E. Castillo, A. Karabanov, V. V. Shvartsman, M. R. Soares, V. Sablinskas, A. N. Salak, D. C. Lupascu and J. Banys, J. Mater. Chem. A, 2020, 8, 14015

机译:评论S.Svirskas,S.Balciunas,M. Simenas,G. Umervius,M. Kinka,M.Velicka,D.Kubicki,Me Castillo,Me Castillo,A. Karabanov,A. Karabanov,A.Karabanov,VV Shvartsman,Saares先生,V.Sablinskas,Salak,DC Lupascu和J. Banys,J. Mater。 化学。 A,2020,8,14015

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摘要

All-inorganic lead halide perovskites have gained a renewed scientific interest due to the outstanding optoelectronic properties unveiled recently, and the related prospects for efficient optical devices. In one of the most recent papers, Svirskas et al. (J. Mater. Chem. A, 2020, 8, 14015) reported on a new phase transition in CsPbBr3. In this comment we show that the claims regarding the new intriguing properties of this material are not supported by convincing experimental data. In particular, a detailed analysis of the results presented in the paper revealed a misinterpretation of the experimental data, as well as substantial inconsistencies between the calorimetric, dielectric, and dilatometric studies. Apparently, this contradicts the existence of a new phase transition in CsPbBr3. We also provide new experimental evidence confirming that the crystal structure is stable below room temperature, at least up to 95 K.
机译:由于最近公布的优异的光电性能,以及高效光学器件的相关前景,所有无机卤化铅钙钛矿已获得新的科学兴趣。在最近的一篇论文中,Svirskas等人(J.Mater.Chem.A,2020,814015)报道了CsPbBr3中的一个新相变。在这篇评论中,我们表明,关于这种材料新的有趣性质的说法没有令人信服的实验数据支持。特别是,对论文中给出的结果的详细分析揭示了对实验数据的误解,以及量热法、介电法和膨胀法研究之间的实质性不一致。显然,这与CsPbBr3中新相变的存在相矛盾。我们还提供了新的实验证据,证实晶体结构在室温以下是稳定的,至少在95 K以下。

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