量子点
光致发光
兴奋剂
量子产额
材料科学
猝灭(荧光)
纳米晶
激发
光电子学
壳体(结构)
热稳定性
纳米颗粒
胶体
纳米技术
量子
纳米材料
热的
作者
Zhuo Chen,Xuexue Shen,Chuigeng Kong,Ouyang Lin,Ao Yu,Haoran Wang,Fenghe Wang,Xu Li,Zhenyang Liu,Ying Wang,Aiwei Tang
标识
DOI:10.1021/acs.jpcc.5c06269
摘要
CuInS2 (CIS) near-infrared (NIR) quantum dots (QDs) are a promising class of colloidal nanocrystals due to their low toxicity and unique optical properties, making them ideal for a variety of applications. However, their stability, particularly against photoinduced quenching (PQ), has been insufficiently studied. Shell doping has emerged as an effective strategy to enhance stability, but existing shell growth methods often lead to significant cation exchange at the core–shell interface, causing an undesirable blue shift in the emission peak and reducing the economic value of NIR emissions. In this study, we introduce a simple and robust shell doping strategy to form a rigid ZnS shell doped with Al, with the aim of improving the stability of QDs while preserving their NIR emission. Al doping increases the shell bandgap, enhances quantum confinement, and passivates trap states at the core–shell interface, synergistically boosting optical performance and stability under high excitation power densities. The resulting CIS/AlZnS (CIS/AZS) core/shell QDs exhibit an NIR emission peak at 970 nm, a photoluminescence quantum yield (PL QY) of 95.2%, and significant improvements in stability, including a 100% increase in thermal stability and a 150% enhancement in resistance to PQ.
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