Mahilary Bilipang, Patir Khemnath, Basumatary Sanjay
Department of Chemistry, Bodoland University, Kokrajhar, Assam, 783370, India.
Department of Applied Science and Humanities, Assam University, Silchar, Assam, 788011, India.
J Fluoresc. 2024 Oct 28. doi: 10.1007/s10895-024-04007-x.
Developing metal free room temperature phosphorescence (RTP) materials have received tremendous attention due its potential application in various fields such as sensing, optoelectronics and anticounterfeiting. Herein, we have synthesized an excitation wavelength and time dependent phosphorescent boron doped carbon nanodots (BCNDs) by thermal treatment of ethanolamine and boric acid at 240 °C, where boric acid act as both doping and host agents. The obtained BCNDs display blue to orange fluorescence in both aqueous medium and solid state. In addition, the BCNDs display tunable orange-yellow-green phosphorescence in solid state under UV and visible light, lasting upto 10 s, visible to naked eye. The boron and nitrogen doping regulates the band gap of the BCNDs, resulting the phosphorescence colour tunability. The average phosphorescence lifetime and quantum yield of BCNDs are found to be 1.27 s and 8.61% respectively. Based on the optical properties, the BCNDs are applied as security ink in information encryption and security marking. Hence, this work can promote the development of metal free phosphorescent carbon based materials which may find application in various emerging fields.
开发无金属室温磷光(RTP)材料因其在传感、光电子学和防伪等各个领域的潜在应用而受到了极大关注。在此,我们通过在240°C下对乙醇胺和硼酸进行热处理合成了一种激发波长和时间依赖性的磷光硼掺杂碳纳米点(BCNDs),其中硼酸同时作为掺杂剂和主体剂。所获得的BCNDs在水性介质和固态中均呈现蓝色至橙色荧光。此外,BCNDs在紫外光和可见光下于固态中呈现可调谐的橙黄绿磷光,持续时间长达10秒,肉眼可见。硼和氮掺杂调节了BCNDs的带隙,从而实现了磷光颜色的可调谐性。发现BCNDs的平均磷光寿命和量子产率分别为1.27秒和8.61%。基于其光学性质,BCNDs被用作信息加密和安全标记中的防伪墨水。因此,这项工作可以推动无金属磷光碳基材料的发展,这些材料可能在各种新兴领域中得到应用。