Wu Jing-Xing, Yan Bing
China-Australia Joint Laboratory for Functional Molecules and Ordered Matters, School of Chemical Science and Engineering, Tongji University, Shanghai 200092, P. R. China.
Dalton Trans. 2017 May 30;46(21):7098-7105. doi: 10.1039/c7dt01352c.
Using p-phenylenediamine as a precursor, p-carbon dots (p-CDs) with strong red-light emission were encapsulated into a metal-organic framework (MOF) followed by introduction of green light-emitting Tb to form a two-color light-emitting hybrid (Tb@p-CDs/MOF). The as-prepared fluorescent-functionalized MOF not only maintained the excellent optical properties of p-CDs and Tb to give strong emission, but also had good chemical and physical properties. The chosen p-CDs were aggregated readily in water, which led to only very weak photoluminescence, whereas the opposite effect was noted in the organic solvents ethanol, dimethylformamide and cyclopropane. Therefore, the as-prepared hybrid showed different color light emission in water or organic solvents, and acted as a ratiometric and colorimetric fluorescent probe to detect water content in organic solvents. Moreover, this hybrid also served as a ratiometric luminescent sensor for detection of relative humidity (RH): the ratio of light intensity at 545 nm to that at 605 nm increased linearly with increasing RH from 33.0% to 85.1% in the atmosphere.
以对苯二胺为前驱体,将具有强红光发射的对碳点(p-CDs)封装到金属有机框架(MOF)中,随后引入绿色发光的铽(Tb),形成双色发光杂化物(Tb@p-CDs/MOF)。所制备的荧光功能化MOF不仅保留了p-CDs和Tb的优异光学性质以产生强发射,还具有良好的化学和物理性质。所选用的p-CDs在水中容易聚集,这导致其光致发光非常微弱,而在有机溶剂乙醇、二甲基甲酰胺和环丙烷中则观察到相反的效果。因此,所制备的杂化物在水或有机溶剂中表现出不同颜色的发光,并作为比率和比色荧光探针用于检测有机溶剂中的含水量。此外,这种杂化物还用作比率发光传感器来检测相对湿度(RH):在大气中,545 nm处的光强度与605 nm处的光强度之比随RH从33.0%增加到85.1%呈线性增加。