Que Ruyue, Audibert Jean-Frédéric, Garcia-Caurel Enrique, Plantevin Olivier, Kalli Kyriacos, Lancry Matthieu, Poumellec Bertrand, Pansu Robert B
CNRS, ENS Paris-Saclay, CentraleSupélec, LuMIn, Université Paris-Saclay, 91190 Gif-sur-Yvette, France.
Institut Polytechnique de Paris, CNRS, École Polytechnique, LPICM, 91120 Palaiseau, France.
Nanomaterials (Basel). 2024 May 27;14(11):941. doi: 10.3390/nano14110941.
Luminescent carbon dots (CDs) were locally synthesized in the core of CYTOP fibers using IR femtosecond laser direct writing (FLDW), a one-step simple method serving as a post-treatment of the pristine fiber. This approach enables the creation of several types of modifications such as ellipsoid voids. The CDs and photoluminescence (PL) distribute at the periphery of the voids. The PL spectral properties were studied through the excitation/emission matrix in the visible range and excitation/emission spectra in the UV/visible range. Our findings reveal the presence of at least three distinct luminescent species, facilitating a broad excitation range extending from UV to green, and light emission spanning from blue to red. The average laser power and dose influence the quantity and ratio of these luminescent CD species. Additionally, we measured the spatially resolved lifetime of the luminescence during and after the irradiation. We found longer lifetimes at the periphery of the laser-induced modified regions and shorter ones closer to the center, with a dominant lifetime ~2 ns. Notably, unlike many other luminophores, these laser-induced CDs are insensitive to oxygen, enhancing their potential for display or data storage applications.
通过红外飞秒激光直写(FLDW)在CYTOP纤维芯部局部合成了发光碳点(CDs),这是一种一步简单的方法,用作原始纤维的后处理。这种方法能够产生多种类型的修饰,如椭球形空隙。CDs和光致发光(PL)分布在空隙的周边。通过可见范围内的激发/发射矩阵以及紫外/可见范围内的激发/发射光谱研究了PL光谱特性。我们的研究结果表明至少存在三种不同的发光物种,促进了从紫外到绿色的宽激发范围以及从蓝色到红色的发光。平均激光功率和剂量会影响这些发光CD物种的数量和比例。此外,我们测量了辐照期间和之后发光的空间分辨寿命。我们发现在激光诱导的改性区域周边寿命较长,而靠近中心的寿命较短,主要寿命约为2 ns。值得注意的是,与许多其他发光体不同,这些激光诱导的CDs对氧气不敏感,增强了它们在显示或数据存储应用中的潜力。