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一锅法合成石墨烯量子点及同步纳米结构自组装:一种新型微波辅助方法:对三嗪去除的影响及效率监测

One-pot synthesis of graphene quantum dots and simultaneous nanostructured self-assembly a novel microwave-assisted method: impact on triazine removal and efficiency monitoring.

作者信息

Fresco-Cala Beatriz, Soriano M Laura, Sciortino Alice, Cannas Marco, Messina Fabrizio, Cardenas Soledad

机构信息

Departamento de Química Analítica, Instituto de Química Fina y Nanoquímica, Edificio anexo Marie Curie, Campus de Rabanales, Universidad de Córdoba E-14071 Córdoba Spain

Dipartimento di Fisica e Chimica, Università degli studi di Palermo via Archirafi 36 90123 Palermo Italy.

出版信息

RSC Adv. 2018 Aug 24;8(52):29939-29946. doi: 10.1039/c8ra04286a. eCollection 2018 Aug 20.

Abstract

One-step methods for fabricating green materials endowed with diverse functions is a challenge to be overcome in terms of reducing environmental risk and cost. We report a fast and easy synthesis of multifunctional materials composed of only fluorescent dots with structural flexibility and high sorption capability. The synthesis consists of a one-pot microwave-assisted reaction for the simultaneous formation of graphene quantum dots (GQDs) from organic precursors and their spontaneous self-assembly forming porous architectures. The GQD-assemblies are robust and no signs of degradation were observed with most organic solvents. The ensuing GQDs and their porous solids were fully characterized at the morphological and optical levels. Interestingly, the solid integrates both the advantages of porous materials and the nanoscale, showing a marked sorption capability towards hazardous electron-deficient triazines (112 mg g of sorbent). Moreover, it also exhibits optical-responsive properties based on quantum confinement when it is disassembled acting as a fluorometric sensor in alcoholic solutions. Therefore, these properties enable this novel material to became a convenient bifunctional analytical tool not only for the removal of herbicides in apolar organic solvents but also as a chemosensor to monitor their presence in polar media. This work opens very challenging possibilities of creating porous graphene-based networks for contaminant remediation and monitoring.

摘要

在降低环境风险和成本方面,制备具有多种功能的绿色材料的一步法是一项有待克服的挑战。我们报道了一种快速简便的多功能材料合成方法,该材料仅由具有结构灵活性和高吸附能力的荧光点组成。合成过程包括一锅法微波辅助反应,用于同时从有机前体形成石墨烯量子点(GQDs)及其自发自组装形成多孔结构。GQD 组装体很稳定,在大多数有机溶剂中未观察到降解迹象。随后对所得的 GQDs 及其多孔固体进行了形态和光学层面的全面表征。有趣的是,该固体兼具多孔材料和纳米尺度的优点,对有害的缺电子三嗪表现出显著的吸附能力(112 mg g 吸附剂)。此外,当它在酒精溶液中分解用作荧光传感器时,还表现出基于量子限域的光学响应特性。因此,这些特性使这种新型材料成为一种便捷的双功能分析工具,不仅可用于在非极性有机溶剂中去除除草剂,还可作为化学传感器监测其在极性介质中的存在。这项工作为创建用于污染物修复和监测的多孔石墨烯基网络开辟了极具挑战性的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5232/9085289/9abaaaa8456c/c8ra04286a-f1.jpg

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