Applied Chemistry Department, Faculty of Technology & Engineering, The Maharaja Sayajirao University of Baroda, Vadodara, Gujarat, 390001, India.
Department of Biochemistry, Faculty of Science, The Maharaja Sayajirao University of Baroda, Vadodara, Gujarat, 390002, India.
J Fluoresc. 2024 Nov;34(6):2895-2906. doi: 10.1007/s10895-023-03489-5. Epub 2023 Nov 11.
This study delves into the fabrication of carbon nanodots (CNDs) through a bottom-up approach, utilizing black seed powder as the precursor material and employing the pyrolysis method. CNDs were synthesized across four distinct temperature settings. The investigation encompasses an extensive characterization of the CNDs, including optical and structural attributes. UV-visible and fluorescence spectroscopy were utilized to assess their optical properties, while FT-IR and XRD analyses confirmed their structural integrity. To elucidate size, shape, and nature, HR-TEM imaging was employed. Furthermore, the functional applications of the synthesized CNDs were explored. The material's antifungal potential was evaluated, and its viability for bioimaging was demonstrated by successfully labeling yeast cells with CNDs. This study underscores the multifaceted nature of CNDs, serving as a bridge between synthesis, comprehensive characterization, and practical applications. In summary, the investigation provides insights into the versatile applications of CNDs derived from black seed powder through pyrolysis. The study contributes to the understanding of their fundamental properties and establishes their potential for both antifungal treatments and cellular bioimaging.
本研究通过自下而上的方法,利用黑种草粉末作为前体材料,并采用热解法制备了碳纳米点(CNDs)。在四个不同的温度条件下合成了 CNDs。该研究对 CNDs 进行了广泛的表征,包括光学和结构特性。利用紫外-可见和荧光光谱法评估了它们的光学性质,而傅里叶变换红外(FT-IR)和 X 射线衍射(XRD)分析则证实了它们的结构完整性。高分辨率透射电子显微镜(HR-TEM)成像用于阐明其尺寸、形状和性质。此外,还探索了合成 CNDs 的功能应用。评估了该材料的抗真菌潜力,并通过成功用 CNDs 标记酵母细胞证明了其在生物成像中的可行性。本研究强调了 CNDs 的多面性,它是合成、全面表征和实际应用之间的桥梁。总之,该研究通过热解法从黑种草粉末中深入探讨了 CNDs 的多种应用。该研究有助于理解它们的基本性质,并为抗真菌治疗和细胞生物成像奠定了基础。