Sengottuvelu Dineshkumar, Shaik Abdul Kalam, Mishra Satish, Ahmad Humayun, Abbaszadeh Mahsa, Hammer Nathan I, Kundu Santanu
Dave C. Swalm School of Chemical Engineering, 323 Presidents Circle, Mississippi State University, MS State, Mississippi 39762, United States.
Department of Chemistry and Biochemistry, University of Mississippi, Oxford, Mississippi 38677, United States.
ACS Omega. 2022 Aug 1;7(31):27742-27754. doi: 10.1021/acsomega.2c03912. eCollection 2022 Aug 9.
Carbon quantum dots (CQDs) have potential applications in many fields such as light-emitting devices, photocatalysis, and bioimaging due to their unique photoluminescence (PL) properties and environmental benignness. Here, we report the synthesis of nitrogen-doped carbon quantum dots (NCQDs) from citric acid and -phenylenediamine using a one-pot hydrothermal approach. The environment-dependent emission changes of NCQDs were extensively investigated in various solvents, in the solid state, and in physically assembled PMMA-PnBA-PMMA copolymer gels in 2-ethyl-hexanol. NCQDs display bright emissions in various solvents as well as in the solid state. These NCQDs exhibit multicolor PL emission across the visible region upon changing the environment (solutions and polymer matrices). NCQDs also exhibit excitation-dependent PL and solvatochromism, which have not been frequently investigated in CQDs. Most CQDs are nonemissive in the aggregated or solid state due to the aggregation-caused quenching (ACQ) effect, limiting their solid-state applications. However, NCQDs synthesized here display a strong solid-state emission centered at 568 nm attributed to the presence of surface functional groups that restrict the π-π interaction between the NCQDs and assist in overcoming the ACQ effect in the solid state. NCQD-containing gels display significant fluorescence enhancement in comparison to the NCQDs in 2-ethyl hexanol, likely because of the interaction between the polar PMMA blocks and NCQDs. The application of NCQDs-Gel as a solid/gel state fluorescent display has been presented. This research facilitates the development of large-scale, low-cost multicolor phosphor for the fabrication of optoelectronic devices, sensing, and bioimaging applications.
碳量子点(CQDs)因其独特的光致发光(PL)特性和环境友好性,在发光器件、光催化和生物成像等许多领域具有潜在应用。在此,我们报道了采用一锅水热法由柠檬酸和对苯二胺合成氮掺杂碳量子点(NCQDs)。我们广泛研究了NCQDs在各种溶剂、固态以及在2-乙基己醇中物理组装的PMMA-PnBA-PMMA共聚物凝胶中的环境依赖性发射变化。NCQDs在各种溶剂以及固态中均表现出明亮的发射。这些NCQDs在改变环境(溶液和聚合物基质)时,在整个可见光区域呈现多色PL发射。NCQDs还表现出激发依赖性PL和溶剂化显色性,而这在CQDs中尚未得到充分研究。由于聚集诱导猝灭(ACQ)效应,大多数CQDs在聚集态或固态中不发光,这限制了它们的固态应用。然而,此处合成的NCQDs在568nm处呈现出强烈的固态发射,这归因于表面官能团的存在,这些官能团限制了NCQDs之间的π-π相互作用,并有助于克服固态中的ACQ效应。与2-乙基己醇中的NCQDs相比,含NCQD的凝胶显示出显著的荧光增强,这可能是由于极性PMMA嵌段与NCQDs之间的相互作用。本文展示了NCQDs-Gel作为固态/凝胶态荧光显示器的应用。这项研究有助于开发用于制造光电器件、传感和生物成像应用的大规模、低成本多色磷光体。
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