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Advanced composite glasses with metallic, perovskite, and two-dimensional nanocrystals for optoelectronic and photonic applications

机译:先进复合材料与金属眼镜,钙钛矿,二维纳米晶体光电子和光子应用程序

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摘要

This article reviews the tremendous advancement of the optoelectronic and photonic properties of inorganic oxide glasses upon the incorporation of metallic, perovskite, and two-dimensional nanocrystals within their matrix. In the first part, we present the exploitation of typical inorganic oxide glasses as hosting platforms for the incorporation of metallic nanoparticles. Such a method offers tremendous advantages in terms of inducing plasmonic features that enable the tunability of the photonic properties of the embedded materials. Along similar lines, due to their exceptional photoluminescence properties all inorganic lead halide perovskites show enormous potential for next generation light-emitting, optoelectronic and photonic devices. To date, however, their usage is limited significantly by their poor chemical stability upon exposure to moisture, and lead toxicity issues. A recent and highly promising approach for overcoming these important challenges is the encapsulation of perovskite nanocrystals within inorganic oxide glasses. Based on this, in the second section we focus on the recent advancements in perovskite glasses in terms of the developed fabrication procedures and the resulting optoelectronic features, while considering the production limitations. In the last part, we consider the development of composite two-dimensional materials glass architectures in terms of the available synthesis routes and the novelty of their optical and emission features. Finally, future perspectives on the described composite glass systems in terms of potential applications are summarized.
机译:本文回顾了巨大的进步光电子和光子的性质无机氧化物眼镜的公司金属钙钛矿,二维的纳米晶体在其矩阵。我们现在开发的典型无机氧化物眼镜托管平台金属纳米粒子的结合。的一个方法提供了巨大的优势诱导,使电浆特性可调谐性的光子的特性植入材料。特殊的光致发光性能所有无机卤化铅钙钛矿新一代的巨大潜力发光、光电子和光子设备。显著的化学稳定性较差在暴露于水分,铅的毒性问题。这些重要的挑战是克服钙钛矿的纳米晶体的封装结构无机氧化物眼镜。第二部分中,我们关注最近的进步在钙钛矿的眼镜的发达和制造过程产生的光电特性,考虑到生产的局限性。最后一部分,我们考虑的发展复合二维材料玻璃体系结构的合成路线和新奇的光学和排放特性。在描述复合玻璃系统而言的潜在应用进行了总结。

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