College of Chemistry, Jilin University, Changchun 130012, China.
Analyst. 2018 Oct 22;143(21):5145-5150. doi: 10.1039/c8an01617h.
Gold nanoclusters have attracted widespread attention because of their unique optical and physical properties. However, traditional synthesis methods are complicated and require additional reducing agents, while the yield is often very low. Such resource and time-consuming synthesis processes limit their further application. Herein, a rapid sonochemical route is used to synthesize fluorescent Au nanoclusters in large quantities using glutathione (GSH) both as a capping and reducing agent. These Au nanoclusters are synthesized quickly (∼40 min) due to the presence of ultrasonic waves, and show orange red photoluminescence (Em = 598 nm), small size (∼2 nm) and good dispersion in aqueous solution. Moreover, GSH, as a protecting agent on the surface of resultant Au nanoclusters, has many functional groups including carboxyl and amino groups because of which the nanoclusters show high photo-, storage-, metal- and pH-stability. A stable Au nanoclusters-based nano-sensor is designed for highly sensitive and selective label-free detection of Cu2+ with a low limit of detection of 7 ppb (based on S/N = 3). The fluorescent probe can be used in versatile nanothermometry devices, because their photoluminescence intensity correlates strongly with temperature and varies considerably over a wide temperature range (20-80 °C). Therefore, the novel fluorescent sensing probe has great application prospects in Cu2+ detection and temperature sensing.
金纳米簇由于其独特的光学和物理性质而引起了广泛的关注。然而,传统的合成方法复杂,需要额外的还原剂,并且产率通常非常低。这种资源和耗时的合成过程限制了它们的进一步应用。在此,使用谷胱甘肽(GSH)作为封端和还原剂,通过快速超声化学途径大量合成了具有荧光的 Au 纳米簇。由于超声波的存在,这些 Au 纳米簇的合成非常迅速(约 40 分钟),并显示出橙色红色的光致发光(Em = 598nm),尺寸小(约 2nm)且在水溶液中分散良好。此外,由于 GSH 作为表面的保护剂,具有许多功能基团,包括羧基和氨基,因此纳米簇表现出高的光稳定性、储存稳定性、金属稳定性和 pH 稳定性。设计了基于稳定的 Au 纳米簇的纳米传感器,用于高灵敏度和选择性的无标记 Cu2+检测,检测限低至 7ppb(基于 S/N = 3)。该荧光探针可用于多功能纳米温度计设备,因为其光致发光强度与温度强烈相关,并且在很宽的温度范围内变化很大(20-80°C)。因此,新型荧光传感探针在 Cu2+检测和温度传感方面具有广阔的应用前景。