纳米探针
荧光
木质素
量子产额
纳米材料
纳米技术
化学
检出限
光化学
碳纤维
化学工程
材料科学
水溶液中的金属离子
离子
有机化学
物理
纳米颗粒
色谱法
复合材料
复合数
量子力学
工程类
作者
Lingli Zhu,Dekui Shen,Qian Liu,Chunfei Wu,Sai Gu
标识
DOI:10.1016/j.apsusc.2021.150526
摘要
Biomass transformation into high-value carbon nanomaterials plays a dual role of easing the energy material crisis and reasonable disposal of waste. Here, we employed biomass lignin as carbon source to synthesize fluorescent carbon quantum dots (CQDs) through a facile two-step method. The preparation condition is optimized at 0.3 g of acid additive and 200 ℃, 16 h of hydrothermal treatment. The resultant CQDs with the average diameter of 4.86 nm and high quantum yield of 23.68% are composed of carbon cores and surface functional groups, exhibiting the maximum green emission wavelength of 476 nm. The formation mechanism involves acid dissociation of lignin in the first step, and then the aromatic refusion of lignin fragments. The CQDs show great advantages as fluorescent nanoprobe for metal ion detection, which present an apparent and selective fluorescence quenching effect on Fe3+. This CQD nanoprobe has a highly sensitive response to Fe3+ ions in the concentration of 0 ~ 300 μM with detection limit of 0.77 μM. The utilization of renewable biomass lignin in this study not only opens the avenue of the sustainable, cost-effective and mass production of CQDs, but also provides a novel alternative nanoprobe for sensing field.
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