Alassafi Jamaan E, Al-Hadeethi Yas, Aida Mohammed S, Roqan Iman S, Al-Shehri Samar F, Ansari Mohammad S, Alamodi Samer, Chen Mingguang
Asser, Health Cluster, Ministry of Health, Abha, Saudi Arabia.
Physics Department, Faculty of Science, King Abdulaziz University, Jeddah, 21589, Saudi Arabia.
Sci Rep. 2024 Nov 26;14(1):29254. doi: 10.1038/s41598-024-80452-9.
In this investigation, blue-emitting carbon nanodots (B.CNDs) with exceptional color purity were successfully synthesized from fresh fig fruit using a one-step pyrolysis method. These B.CNDs are small and spherical (3.7 nm) with an amorphous carbon core encapsulated inside a passivated layer primarily composed of oxygen-related functional groups. They demonstrated an emission property that is independent of excitation, showing the highest emission intensity in the deep blue region at 450 nm with a narrow full-width at half maximum (FWHM) at 44 nm and a quantum yield of 15.5%. This exceptional value of FWHM is attributed to the remarkable uniformity in both morphological and chemical composition that was achieved through the utilization of the reverse diffusion technique combined with the dialysis method for purification and separation of B.CNDs. This work not only contributes to the expanding field of carbon nanomaterials but also introduces a novel and sustainable approach to fabricate CDs with unparalleled color purity and optical performance.
在本研究中,采用一步热解法成功地从新鲜无花果果实中合成了具有优异色纯度的蓝色发光碳纳米点(B.CNDs)。这些B.CNDs呈小的球形(3.7纳米),具有无定形碳核,被包裹在主要由氧相关官能团组成的钝化层内。它们表现出与激发无关的发射特性,在450纳米的深蓝色区域显示出最高发射强度,半高宽(FWHM)窄至44纳米,量子产率为15.5%。FWHM的这一优异值归因于通过利用反向扩散技术结合透析法对B.CNDs进行纯化和分离,在形态和化学成分上实现了显著的均匀性。这项工作不仅为碳纳米材料不断扩展的领域做出了贡献,还引入了一种新颖且可持续的方法来制备具有无与伦比的色纯度和光学性能的碳点。