作者
Xin Tong, Xiang‐Tian Kong, Yufeng Zhou, Fabiola Navarro‐Pardo, Gurpreet Singh Selopal, Shuhui Sun, Alexander O Govorov, Haiguang Zhao, Zhiming M Wang, Federico Rosei
发表日期
2018/1
期刊
Advanced Energy Materials
卷号
8
期号
2
页码范围
1701432
简介
“Giant” core/shell quantum dots (g‐QDs) are a promising class of materials for future optoelectronic technologies due to their superior chemical‐ and photostability compared to bare QDs and core/thin shell QDs. However, inadequate light absorption in the visible and near‐infrared (NIR) region and frequent use of toxic heavy metals (e.g., Cd and Pb) are still major challenges for most g‐QDs (e.g., CdSe/CdS) synthesized to date. The synthesis of NIR, heavy metal‐free, Zn‐treated spherical CuInSe2/CuInS2 g‐QDs is reported using the sequential cation exchange method. These g‐QDs exhibit tunable NIR optical absorption and photoluminescence (PL) properties. Transient fluorescence spectroscopy shows prolonged lifetime with increasing shell thickness, indicating the formation of quasi type‐II band alignment, which is further confirmed by simulations. As a proof‐of‐concept, as‐synthesized g‐QDs are used to …
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