Zhong Haizheng, Bai Zelong, Zou Bingsuo
J Phys Chem Lett. 2012 Nov 1;3(21):3167-75. doi: 10.1021/jz301345x. Epub 2012 Oct 19.
In the past 5 years, colloidal I-III-VI nanocrystals such as CuInS2, CuInSe2, and AgInS2 have been intensively investigated for the potential to replace commonly available colloidal nanocrystals containing toxic elements in light-emitting and solar-harvesting applications. Many researchers from different disciplines are working on developing new synthetic protocols, performing spectroscopic studies to understand the luminescence mechanisms, and exploring various applications. To achieve enhanced performance, it is very desirable to obtain high-quality materials with tunable luminescence properties. In this Perspective, we highlight the current progress on tuning the luminescence properties of I-III-VI nanocrystals, especially focusing on the advances in the synthesis, spectroscopic properties, as well as the primary applications in light-emitting devices and bioimaging techniques. Finally, we outline the challenges concerning luminescent I-III-VI NCs and list a few important research tasks in this field.
在过去的5年里,诸如硫化铜铟(CuInS2)、硒化铜铟(CuInSe2)和硫化银铟(AgInS2)等I-III-VI族胶体纳米晶体,因其在发光和太阳能收集应用中具有取代常用的含有毒元素胶体纳米晶体的潜力而受到广泛研究。来自不同学科的许多研究人员致力于开发新的合成方法、进行光谱研究以了解发光机制,并探索各种应用。为了实现性能的提升,获得具有可调发光特性的高质量材料是非常理想的。在这篇展望文章中,我们重点介绍了在调节I-III-VI族纳米晶体发光特性方面的当前进展,特别关注合成、光谱性质以及在发光器件和生物成像技术中的主要应用方面的进展。最后,我们概述了关于发光I-III-VI族纳米晶体的挑战,并列出了该领域的一些重要研究任务。