Beijing Key Lab for Green Catalysis and Separation, Department of Chemistry and Chemical Engineering, College of Environmental and Energy Engineering, Beijing University of Technology, 100 Pingleyuan, Beijing, 100124, P. R. China.
State Key Laboratory of Luminescence and Applications, Changchun Institute of Optics, Fine Mechanics and Physics, Changchun, 130033, Jilin, P. R. China.
Adv Mater. 2018 Jan;30(1). doi: 10.1002/adma.201704740. Epub 2017 Nov 27.
Multiple-color-emissive carbon dots (CDots) have potential applications in various fields such as bioimaging, light-emitting devices, and photocatalysis. The majority of the current CDots to date exhibit excitation-wavelength-dependent emissions with their maximum emission limited at the blue-light region. Here, a synthesis of multiple-color-emission CDots by controlled graphitization and surface function is reported. The CDots are synthesized through controlled thermal pyrolysis of citric acid and urea. By regulating the thermal-pyrolysis temperature and ratio of reactants, the maximum emission of the resulting CDots gradually shifts from blue to red light, covering the entire light spectrum. Specifically, the emission position of the CDots can be tuned from 430 to 630 nm through controlling the extent of graphitization and the amount of surface functional groups, COOH. The relative photoluminescence quantum yields of the CDots with blue, green, and red emission reach up to 52.6%, 35.1%, and 12.9%, respectively. Furthermore, it is demonstrated that the CDots can be uniformly dispersed into epoxy resins and be fabricated as transparent CDots/epoxy composites for multiple-color- and white-light-emitting devices. This research opens a door for developing low-cost CDots as alternative phosphors for light-emitting devices.
多色发射碳点(CDots)在生物成像、发光器件和光催化等多个领域具有潜在的应用。迄今为止,大多数现有的 CDots 表现出激发波长依赖性发射,其最大发射限制在蓝光区域。在此,报道了一种通过控制石墨化和表面功能来合成多色发射 CDots 的方法。通过柠檬酸和尿素的控制热解合成 CDots。通过调节热解温度和反应物的比例,可以使所得 CDots 的最大发射逐渐从蓝光转移到红光,覆盖整个可见光谱。具体而言,可以通过控制石墨化程度和表面官能团(-COOH)的数量来调节 CDots 的发射位置,从 430nm 到 630nm。具有蓝色、绿色和红色发射的 CDots 的相对光致发光量子产率分别高达 52.6%、35.1%和 12.9%。此外,还证明了 CDots 可以均匀分散到环氧树脂中,并制成透明的 CDots/环氧树脂复合材料,用于多色和白光发光器件。这项研究为开发低成本 CDots 作为发光器件的替代荧光粉开辟了道路。