Liaoning Key Laboratory of Pulp and Paper Engineering, Dalian Polytechnic University, Dalian, 116034, China.
J Mater Chem B. 2020 Dec 21;8(47):10788-10796. doi: 10.1039/d0tb00125b. Epub 2020 Nov 6.
To achieve a rapid and facile quantitative evaluation of Sudan I illegally added in ketchup, fluorescent carbon quantum dots with excellent stability in acidic environments are required as the actual pH value of ketchup is close to 4.0. In this paper, we developed a green approach to prepare sulfur-doped carbon quantum dots (SCQDs) via hydrothermal treatment of lignin, isolated from pre-hydrolysis liquor, in sulfuric acid solution. The resultant SCQDs from lignin possessed sulfur-containing groups, which exhibited excellent fluorescence with a quantum yield up to 13.5% and good stability in acidic environments with a wide pH range of 0-5.0. Therefore, the SCQDs were successfully employed as a sensor to detect Sudan I in acidic solutions with excellent selectivity and sensitivity. The linear range for Sudan I was 0-40 μM, while the limit of detection was 0.12 μM. In addition, the fluorescent indicator paper functionalized with SCQDs also showed outstanding selectivity to Sudan I. The proposed SCQD sensing system not only displayed application potential for quantitative evaluation of Sudan I dye in practical samples, but also provided a way to convert lignin-based waste into highly valued nanoscale materials.
为了实现对番茄酱中非法添加的苏丹红 I 的快速、简便定量评估,需要具有优异的酸性环境稳定性的荧光碳量子点,因为番茄酱的实际 pH 值接近 4.0。在本文中,我们通过在硫酸溶液中水热处理从预水解液中分离得到的木质素,开发了一种绿色方法来制备硫掺杂碳量子点(SCQDs)。从木质素中得到的 SCQDs 具有含硫基团,其荧光量子产率高达 13.5%,并且在 pH 值为 0-5.0 的宽范围内具有良好的酸性环境稳定性。因此,SCQDs 被成功地用作在酸性溶液中检测苏丹红 I 的传感器,具有优异的选择性和灵敏度。苏丹红 I 的线性范围为 0-40 μM,检测限为 0.12 μM。此外,用 SCQDs 功能化的荧光指示纸条对苏丹红 I 也表现出出色的选择性。所提出的 SCQD 传感系统不仅显示出在实际样品中定量评估苏丹红 I 染料的应用潜力,而且还为将木质素基废物转化为高价值的纳米材料提供了一种方法。