Majani Sanjay S, S H Sowmyashree, J Sowjanyashree, Umesh Sahaja, Shivamallu Chandan, Iqbal Muzaffar, Amachawadi Raghavendra G, K N Venkatachalaiah, Kollur Shiva Prasad
School of Physical Sciences, Amrita Vishwa Vidyapeetham, Mysuru Campus, Mysuru 570 022, Karnataka, India.
Department of Biotechnology and Bioinformatics, JSS Academy of Higher Education and Research, Mysuru 570 015, Karnataka, India.
Molecules. 2023 Oct 23;28(20):7228. doi: 10.3390/molecules28207228.
The present work elucidates the fabrication of Barium Lanthanum Oxide nanosheets (BaLaO NSs) via a simple one-pot precipitation method. The acquired results show an orthorhombic crystal system with an average crystallite size of 27 nm. The morphological studies revealed irregular-shaped sheets stacked together in a layered structure, with the confirmation of the precursor elements. The diffused reflectance studies revealed a strong absorption between 200 nm and 350 nm, from which the band-gap energy was evaluated to be 4.03 eV. Furthermore, the fluorescence spectrum was recorded for the prepared samples; the excitation spectrum shows a strong peak at 397 nm, attributed to the F→G transition, while the emission shows two prominent peaks at 420 nm (G→F) and 440 nm (G→F). The acquired emission results were utilized to confirm the color emission using a chromaticity plot, which found the coordinates to be at (0.1529 0.1040), and the calculated temperature was 3171 K. The as-prepared nanosheets were utilized in detecting latent fingerprints (LFPs) on various non-porous surfaces. The powder-dusting method was used to develop latent fingerprints on various non-porous surfaces, which resulted in detecting all the three ridge patterns. Furthermore, the as-synthesized nanosheets were used to degrade methyl red (MR) dye, the results of which show more than 60% degradation at the 70th minute. It was also found that there was no further degradation after 70 min. All the acquired results suggest the clear potential of the prepared BaLaO NSs for use in advanced forensic and photocatalytic applications.
本工作阐明了通过简单的一锅沉淀法制备氧化镧钡纳米片(BaLaO NSs)的过程。所得结果表明其为正交晶系,平均微晶尺寸为27 nm。形态学研究揭示了不规则形状的薄片以层状结构堆叠在一起,并证实了前驱体元素的存在。漫反射研究表明在200 nm至350 nm之间有强烈吸收,据此评估带隙能量为4.03 eV。此外,还记录了制备样品的荧光光谱;激发光谱在397 nm处有一个强峰,归因于F→G跃迁,而发射光谱在420 nm(G→F)和440 nm(G→F)处有两个突出峰。利用所得发射结果通过色度图确认颜色发射,发现坐标为(0.1529 0.1040),计算出的温度为3171 K。所制备的纳米片用于检测各种无孔表面上的潜在指纹(LFPs)。采用粉末刷显法在各种无孔表面上显现潜在指纹,结果检测到了所有三种纹线图案。此外,合成的纳米片用于降解甲基红(MR)染料,结果表明在第70分钟时降解率超过60%。还发现70分钟后没有进一步降解。所有所得结果表明所制备的BaLaO NSs在先进的法医和光催化应用中具有明显的潜力。