Department of Chemistry, Karmaveer Bhaurao Patil College, Urun-Islampur, Maharashtra, India.
Fluorescence Spectroscopy Research Laboratory, Department of Chemistry, Shivaji University, Kolhapur, Maharashtra, India.
Luminescence. 2022 Mar;37(3):440-447. doi: 10.1002/bio.4190. Epub 2022 Jan 25.
Fluorescent carbon dots (CDs) are one of the important carbonaceous nanomaterials in the area of nanoscience and nanotechnology because of their interesting physical as well as chemical properties. Herein we studied the effect of various aqueous extracting agents on fluorescence properties of waste tea residue-based carbon dots (WTR-CDs). WTR-CDs are firstly synthesized by utilizing kitchen waste-based carbonaceous biomass. To check the role of various aqueous media during the course of WTR-CDs synthesis from carbonized carbon powder, extraction of WTR-CDs was carried out in various kinds of aqueous media viz., only aqueous (100% water, WT), aqueous-alcoholic (10% ethanol, ET), aqueous-acidic (10% acetic acid, AA), and aqueous-basic (10% ammonia, AM). The consequences of extracting agents on the photophysical properties of final WTR-CDs-WT, WTR-CDs-ET, WTR-CDs-AA and WTR-CDs-AM were also discussed in detail. We have observed interesting blue shift fluorescence spectra in acidic medium for WTR-CDs-AA and polar protic solvents compared to polar aprotic medium. The solvatochromic behaviour of WTR-CDs-WT in model polar and non-polar solvent was also studied. The effect of cationic, anionic and non-anionic surfactants on the fluorescence of WTR-CDs-WT was also evaluated. The proposed findings may help researchers in the near future to obtain fast, easy and direct synthesize CDs from a variety of biomass-based precursors under different aqueous conditions.
荧光碳点(CDs)是纳米科学和纳米技术领域中重要的碳质纳米材料之一,因为它们具有有趣的物理和化学性质。本文研究了不同水提取剂对废茶渣基碳点(WTR-CDs)荧光性质的影响。WTR-CDs 是通过利用厨房废弃物基碳质生物质首次合成的。为了考察在碳化碳粉合成 WTR-CDs 的过程中各种水介质的作用,在各种水介质中进行了 WTR-CDs 的提取,即仅用水(100%水,WT)、水-醇(10%乙醇,ET)、水-酸(10%乙酸,AA)和水-碱(10%氨水,AM)。还详细讨论了提取剂对最终 WTR-CDs-WT、WTR-CDs-ET、WTR-CDs-AA 和 WTR-CDs-AM 的光物理性质的影响。我们观察到在酸性介质中 WTR-CDs-AA 和极性质子溶剂的荧光光谱有有趣的蓝移,而在极性非质子溶剂中则没有。还研究了 WTR-CDs-WT 在模型极性和非极性溶剂中的溶剂化行为。还评估了阳离子、阴离子和非离子表面活性剂对 WTR-CDs-WT 荧光的影响。这些发现可能有助于研究人员在不久的将来在不同的水条件下从各种生物质前体制备快速、简便、直接的 CDs。