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Ternary and quaternary metal chalcogenide nanocrystals: synthesis; properties and applications

机译:三元和四元金属硫属元素化物纳米晶体:合成;属性和应用

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摘要

We review the field of multinary metal chalcogenide nanocrystals, which has gained strongly increasing interest in the quest for novel narrow band gap semiconductors. Small (2-4 nm) CulnS2 and CulnSe2 nanocrystals, for example, exhibit size dependent luminescence in the visible and near infrared range. Their quantum yield can exceed 50% after growth of a ZnS shell, which makes them appealing emitters for lighting, displaying and biological imaging applications. Cu2ZnSnS4 (CZTS) nanocrystals, on the other hand, can be used as solution processed absorbing materials in thin film solar cells showing high power conversion efficiencies (currently around 8-10%). These examples illustrate that multinary metal chalcogenide nanocrystals have high potential for replacing classical cadmium and lead chalcogenide quantum dots in many fields. We give an overview of the chemical synthesis methods of the different systems reported to date, classifying them according to the obtained crystal structure. Next, we discuss their photophysical properties and give a brief description of the main fields of application. Finally, we conclude by outlining current challenges and related future directions of this exponentially growing domain.
机译:我们回顾了多元金属硫族化物纳米晶体的领域,该领域在寻求新型窄带隙半导体方面已引起了越来越多的关注。例如,小的(2-4 nm)CulnS2和CulnSe2纳米晶体在可见光和近红外范围内显示出与尺寸有关的发光。 ZnS壳生长后,其量子产率可超过50%,这使其成为吸引照明,显示和生物成像应用的发射器的原因。另一方面,Cu2ZnSnS4(CZTS)纳米晶体可用作薄膜太阳能电池中溶液处理的吸收材料,显示出高功率转换效率(目前约为8-10%)。这些例子说明,多元金属硫属元素化物纳米晶体在许多领域具有取代经典镉和硫属元素化物量子点的高潜力。我们概述了迄今为止报道的不同系统的化学合成方法,并根据获得的晶体结构对它们进行了分类。接下来,我们讨论它们的光物理性质,并简要介绍其主要应用领域。最后,我们通过概述这个指数级增长领域的当前挑战和相关的未来方向作为总结。

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