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Recent advances in lead-free double perovskites for x-ray and photodetection

机译:用于X射线和光探测的无铅双钙钛矿的最新进展

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Over the last decade, lead halide perovskites have attracted significant research attention in the field of photovoltaics, light-emitting devices, photodetection, ionizing radiation detection, etc, owing to their outstanding optoelectrical properties. However, the commercial applications of lead-based perovskite devices are restricted due to the poor ambient stability and toxicity of lead. The encapsulation of lead-based devices can reduce the possible leakage of lead. However, it is hard to ensure safety during large-scale production and long-term storage. Recently, considerable efforts have been made to design lead-free perovskites for different optoelectronic applications. Metal halide double perovskites with the general formula of A(2)M(I)M(III)X(6) or A(2)M(IV)X(6) could be potentially considered as green and stable alternatives for different optoelectronic applications. In this review article, we focus on the recent progress and findings on lead-free halide double perovskites for x-ray and UV-vis photodetection applications. Lead-free halide double perovskite has recently drawn a great deal of attention for superior x-ray detection due to its high absorption coefficient, large carrier mobility-lifetime product, and large bulk resistance. In addition, these materials exhibit good performance in photodetection in the UV-vis region due to high photocarrier generation and efficient carrier separation. In this review, first, we define the characteristics of lead-free double perovskite materials. The fundamental characteristics and beneficial properties of halide perovskites for direct and indirect x-ray detection are then discussed. We comprehensively review recent developments and efforts on lead-free double perovskite for x-ray detection and UV-vis photodetection. We bring out the current challenges and opportunities in the field and finally present the future outlook for developing lead-free double perovskite-based x-ray and UV-vis photodetectors for practical applications.
机译:近十年来,卤化铅钙钛矿因其优异的光电性能,在光伏、发光器件、光探测、电离辐射探测等领域引起了广泛的研究关注。然而,由于铅的环境稳定性差和铅的毒性,铅基钙钛矿器件的商业应用受到限制。铅基器件的封装可以减少铅的可能泄漏。然而,在大规模生产和长期储存过程中,很难确保安全。最近,人们已经为设计用于不同光电应用的无铅钙钛矿做出了相当大的努力。通式为A(2)M(I)M(III)X(6)或A(2)M(IV)X(6)的金属卤化物双钙钛矿可被视为不同光电应用的绿色和稳定替代品。在这篇综述文章中,我们重点介绍了无铅卤化物双钙钛矿在X射线和紫外-可见光检测应用中的最新进展和发现。近年来,无铅卤化物双钙钛矿因其吸收系数高、载流子迁移率寿命积大、体积电阻大等优点,在X射线检测方面备受关注。此外,由于光载流子产生率高和载流子分离效率高,这些材料在紫外-可见光区域的光检测中表现出良好的性能。本文首先对无铅双钙钛矿材料的特性进行了定义。然后讨论了卤化物钙钛矿用于直接和间接X射线检测的基本特性和有益特性。我们全面回顾了用于X射线检测和紫外-可见光检测的无铅双钙钛矿的最新发展和努力。我们提出了该领域当前的挑战和机遇,并最终提出了开发无铅双钙钛矿基X射线和紫外-可见光电探测器用于实际应用的未来前景。

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