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Optical Properties Synthesis and Potential Applications of Cu-Based Ternary or Quaternary Anisotropic Quantum Dots Polytypic Nanocrystals and Core/Shell Heterostructures

机译:铜基三元或四元各向异性量子点多型纳米晶体和核/壳异质结构的光学性质合成及其潜在应用

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摘要

This review summaries the optical properties, recent progress in synthesis, and a range of applications of luminescent Cu-based ternary or quaternary quantum dots (QDs). We first present the unique optical properties of the Cu-based multicomponent QDs, regarding their emission mechanism, high photoluminescent quantum yields (PLQYs), size-dependent bandgap, composition-dependent bandgap, broad emission range, large Stokes’ shift, and long photoluminescent (PL) lifetimes. Huge progress has taken place in this area over the past years, via detailed experimenting and modelling, giving a much more complete understanding of these nanomaterials and enabling the means to control and therefore take full advantage of their important properties. We then fully explore the techniques to prepare the various types of Cu-based ternary or quaternary QDs (including anisotropic nanocrystals (NCs), polytypic NCs, and spherical, nanorod and tetrapod core/shell heterostructures) are introduced in subsequent sections. To date, various strategies have been employed to understand and control the QDs distinct and new morphologies, with the recent development of Cu-based nanorod and tetrapod structure synthesis highlighted. Next, we summarize a series of applications of these luminescent Cu-based anisotropic and core/shell heterostructures, covering luminescent solar concentrators (LSCs), bioimaging and light emitting diodes (LEDs). Finally, we provide perspectives on the overall current status, challenges, and future directions in this field. The confluence of advances in the synthesis, properties, and applications of these Cu-based QDs presents an important opportunity to a wide-range of fields and this piece gives the reader the knowledge to grasp these exciting developments.
机译:这篇综述总结了光学性质,合成的最新进展以及发光的基于铜的三元或四元量子点(QD)的应用范围。首先,我们介绍了基于铜的多组分量子点的独特光学性质,涉及它们的发射机理,高光致发光量子产率(PLQYs),尺寸依赖带隙,成分依赖带隙,宽发射范围,大斯托克斯位移和长光致发光(PL)寿命。在过去的几年中,通过详细的实验和建模,该领域已取得了巨大进展,从而使人们对这些纳米材料有了更全面的了解,并使控制手段得以充分利用,从而充分利用了它们的重要特性。然后,我们将充分探索准备各种类型的Cu基三元或四元QD(包括各向异性纳米晶体(NC),多型NC和球形,纳米棒和四脚核/壳异质结构)的技术。迄今为止,已经采用了各种策略来理解和控制QD的独特和新形态,并着重强调了基于铜的纳米棒和四脚架结构合成的最新发展。接下来,我们总结了这些基于发光铜的各向异性和核/壳异质结构的一系列应用,涵盖了发光太阳能聚光器(LSC),生物成像和发光二极管(LED)。最后,我们提供有关该领域总体现状,挑战和未来方向的观点。这些基于铜的量子点的合成,性质和应用方面的进展融合在一起,为广泛的领域提供了重要的机会,并且这篇文章为读者提供了掌握这些令人振奋的发展的知识。

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