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用于制备用于选择性检测铁离子的生物质碳点的无溶剂热解策略

Solvent-Free Pyrolysis Strategy for the Preparation of Biomass Carbon Dots for the Selective Detection of Fe Ions.

作者信息

Chen Menglin, Zhai Jichao, An Yulong, Li Yan, Zheng Yunwu, Tian Hao, Shi Rui, He Xiahong, Liu Can, Lin Xu

机构信息

Yunnan Key Laboratory of Wood Adhesives and Glued Products National Joint Engineering Research Center for Highly-Efficient Utilization of Forest Biomass Resources, Southwest Forestry University, Kunming, China.

Key Laboratory for Forest Resources Conservation and Utilization in the Southwest Mountains of China, Ministry of Education, Southwest Forestry University, Kunming, China.

出版信息

Front Chem. 2022 Jul 6;10:940398. doi: 10.3389/fchem.2022.940398. eCollection 2022.

Abstract

Biomass carbon dots (BCDs) have the advantages of being nontoxic, low cost and simple to prepare, have excellent optical properties, good biocompatibility and stability, and therefore have broad application prospects in areas such as heavy metal ion detection and optoelectronic devices. Herein, a simple, green, solvent-free method of preparing BCDs was developed. CDs with certain fluorescence properties were prepared by a solvent-free pyrolysis method at different temperatures using two abundant components (cellulose and lignin) of biomass resources as carbon sources. Both the cellulose CDs prepared at 300°C and the lignin CDs prepared at 350°C exhibited high quantum yields of 11.7% and 23.4%, respectively, a result that was mainly due to the high degree of graphitization. The analysis and results demonstrated the selectivity of CDs for the detection of various metal ion solutions. In particular, CDs are sensitive to Fe and can be used as a fluorescent sensor for the detection of Fe, providing a more efficient, sustainable alternative for metal ion detection.

摘要

生物质碳点(BCDs)具有无毒、低成本、制备简单的优点,具有优异的光学性能、良好的生物相容性和稳定性,因此在重金属离子检测和光电器件等领域具有广阔的应用前景。在此,开发了一种简单、绿色、无溶剂的制备BCDs的方法。以生物质资源的两种丰富成分(纤维素和木质素)为碳源,通过无溶剂热解方法在不同温度下制备了具有一定荧光性质的碳点。在300°C制备的纤维素碳点和在350°C制备的木质素碳点分别表现出11.7%和23.4%的高量子产率,这一结果主要归因于高度的石墨化。分析和结果证明了碳点对各种金属离子溶液检测的选择性。特别是,碳点对铁敏感,可作为检测铁的荧光传感器,为金属离子检测提供了一种更高效、可持续的替代方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a256/9298851/55646e3a7a18/fchem-10-940398-g001.jpg

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