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Lead-Chalcogenide Colloidal-Quantum-Dot Solids: Novel Assembly Methods, Electronic Structure Control, and Application Prospects

机译:硫族元素铅胶体-量子点固体:新颖的组装方法,电子结构控制和应用前景。

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摘要

The quest for novel semiconductors with easy, cheap fabrication and tailorable properties has led to the development of several classes of materials, such as semiconducting polymers, carbon nanotubes, hybrid perovskites, and colloidal quantum dots. All these candidates can be processed from the liquid phase, enabling easy fabrication, and are suitable for different electronic and optoelectronic applications. Here, recent developments in the field of colloidal-quantum-dot solids are discussed, with a focus on lead-chalcogenide systems. These include novel deposition methods; the recent growing understanding of their fundamental properties, driven by major successes in the control of the nanostructured assembly and surface chemistry; and selected reports on lab-scale devices showing the technological prospects of these fascinating class of materials.
机译:对具有容易,廉价的制造和可定制的特性的新型半导体的需求导致了几类材料的开发,例如半导体聚合物,碳纳米管,混合钙钛矿和胶体量子点。所有这些候选材料都可以从液相进行处理,从而易于制造,并且适用于不同的电子和光电应用。在这里,讨论了胶体量子点固体领域的最新发展,重点是硫属硫化物铅系统。这些包括新颖的沉积方法;在控制纳米结构组装和表面化学方面取得重大成功,促使人们对它们的基本性能有了新的认识;并选择了实验室规模的设备的报告,这些报告显示了这些引人入胜的材料类别的技术前景。

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