蛋白核小球藻
水热液化
化学
碳纤维
热液循环
量子产额
产量(工程)
核化学
水热合成
荧光
小球藻
材料科学
化学工程
有机化学
催化作用
藻类
植物
物理
量子力学
复合数
冶金
工程类
复合材料
生物
作者
Jingmiao Zhang,Ao Xia,Huize Chen,Abdul‐Sattar Nizami,Yun Huang,Xianqing Zhu,Xun Zhu,Qiang Liao
标识
DOI:10.1016/j.scitotenv.2022.156144
摘要
A promising green hydrothermal process was used to produce biobased nanomaterials carbon dots (CDs) by using microalgae Chlorella pyrenoidosa (CP) and its main model compounds (i.e., glucose, glycine, and octadecanoic acid). The possible reaction pathway including hydrolysis, Amadori rearrangement, cyclization/aromatization, and polymerization was first proposed for the hydrothermal process to produce microalgae-based CDs. Interactions among carbohydrates and proteins in microalgae were vital intermediate reactions in the generation of CDs. The mass yield of CDs reached 7.2% when the CP was hydrothermally treated with 20:1 of liquid-to-solid ratio at 230 °C for 6 h. It was confirmed that nitrogen, sulfur, phosphorous, and potassium were doped onto CP-based CDs (CD-CP) successfully without additional reagents or treatments. The CD-CP yield was 4.0-24.3 times higher than that of model compound-based CDs. Regarding morphology, CD-CP was constituted by many spherical nanoparticles smaller than 20 nm. These CDs emitted blue fluorescence under ultraviolet light, and the fluorescence quantum yield of CD-CP was 4.7-9.4 times higher than that of CP model compound-based CDs. Last, CD-CP displayed broad application prospects as a sensor for Fe3+ detection in wastewater with high sensitivity.
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