Department of Chemistry "Giacomo Ciamician", University of Bologna, Bologna, 40126, Italy.
Nanoscale Horiz. 2021 Sep 1;6(9):676-695. doi: 10.1039/d1nh00260k. Epub 2021 Jul 15.
Copper indium sulfide (CIS) quantum dots are ideal for bioimaging applications, by being characterized by high molar absorption coefficients throughout the entire visible spectrum, high photoluminescence quantum yield, high tolerance to the presence of lattice defects, emission tunability from the red to the near-infrared spectral region by changing their dimensions and composition, and long lifetimes (hundreds of nanoseconds) enabling time-gated detection to increase signal-to-noise ratio. The present review collects: (i) the most common procedures used to synthesize stable CIS QDs and the possible strategies to enhance their colloidal stability in aqueous environment, a property needed for bioimaging applications; (ii) their photophysical properties and parameters that affect the energy and brightness of their photoluminescence; (iii) toxicity and bioimaging applications of CIS QDs, including tumor targeting, time-gated detection and multimodal imaging, as well as theranostics. Future perspectives are analyzed in view of advantages and potential limitations of CIS QDs compared to most traditional QDs.
铜铟硫量子点 (CIS QDs) 是生物成像应用的理想选择,其特点是在整个可见光范围内具有高摩尔吸收系数、高光致发光量子产率、对晶格缺陷存在的高容忍度、通过改变其尺寸和组成实现从红色到近红外光谱区域的发射可调谐性,以及长寿命(数百纳秒),可实现时间门控检测以提高信噪比。本综述收集了:(i) 合成稳定 CIS QDs 最常用的方法,以及在水相环境中增强其胶体稳定性的可能策略,这是生物成像应用所必需的;(ii) 它们的光物理性质和影响其光致发光能量和亮度的参数;(iii) CIS QDs 的毒性和生物成像应用,包括肿瘤靶向、时间门控检测和多模态成像以及治疗。根据 CIS QDs 与大多数传统 QDs 相比的优势和潜在局限性,分析了未来的展望。