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聚合型深共晶溶剂修饰磁性生物炭中形成的双模式氢键增强了对 3,4-亚甲二氧基甲基苯丙胺的选择性。

The dual-configured hydrogen bonds induced by polymerized deep eutectic solvents-modified magnetic biochar enhanced the selectivity for 3,4-methylenedioxymethamphetamine.

机构信息

College of Pharmacy, Chongqing Medical University, Chongqing, 400016, China.

Forensic Identification Center, Southwest University of Political Science and Law, Chongqing, 401120, China; Criminal Investigation Law School, Southwest University of Political Science and Law, Chongqing, 401120, China.

出版信息

Environ Pollut. 2024 Sep 1;356:124193. doi: 10.1016/j.envpol.2024.124193. Epub 2024 May 22.

DOI:10.1016/j.envpol.2024.124193
PMID:38788993
Abstract

The accurate discovering and monitoring of 3,4-methylenedioxymethamphetamine (MDMA) are especially important because of its substantial toxicity and potential harm to human and the ecological systems. Three types of polymerized deep eutectic solvents functionalized magnetic biochar (MBC@poly (AA/AAC/AAm-ChCl)) were successfully synthesized to adsorb MDMA. The isotherm and kinetic data confirmed that MBC@poly (AAm-ChCl) had the strongest adsorption capacity, and the order of adsorption capacity is as follow: MBC@poly(AAm-ChCl) > MBC@poly(AA-ChCl) > MBC@poly(MAA-ChCl), which also revealed that the adsorption was heterogeneous multi-layer chemisorption. The findings of the characterizations manifested that MBC@poly(AAm-ChCl) was the optimal adsorbent owning to its higher nitrogen content, resulting in the formation of a greater number of hydrogen bonds. Due to the strong hydrogen bonding effect of CO and -NH functional groups, MBC@poly(AAm-ChCl) exhibited the high selectivity towards MDMA under the coexistence of multiple chemical substances, and excellent adsorption performance over the pH range of 4-11. Urea as a hydrogen bond inhibitor further confirmed MBC@poly(AAm-ChCl) had high-density active hydrogen bonding sites. Furthermore, utilizing density functional theory (DFT) for simulating adsorption both before and after the process verified that the high selectivity of MBC@poly(AAm-ChCl) attributed to the formation of the dual-configured hydrogen bonds. This study provides support for the production of highly selective biochar for use in pretreatment during drug detection.

摘要

准确发现和监测 3,4-亚甲二氧基甲基苯丙胺(MDMA)非常重要,因为它具有很大的毒性,可能对人类和生态系统造成潜在危害。成功合成了三种聚合型深共晶溶剂功能化磁性生物炭(MBC@poly(AA/AAC/AAm-ChCl)),用于吸附 MDMA。等温线和动力学数据证实,MBC@poly(AAm-ChCl)具有最强的吸附能力,吸附容量的顺序为:MBC@poly(AAm-ChCl)>MBC@poly(AA-ChCl)>MBC@poly(MAA-ChCl),这也表明吸附是不均匀的多层化学吸附。表征结果表明,MBC@poly(AAm-ChCl)是最佳的吸附剂,因为它具有更高的氮含量,从而形成更多的氢键。由于 CO 和-NH 官能团的强氢键效应,在多种化学物质共存的情况下,MBC@poly(AAm-ChCl)对 MDMA 表现出高选择性,并且在 pH 值为 4-11 的范围内具有优异的吸附性能。尿素作为氢键抑制剂进一步证实了 MBC@poly(AAm-ChCl)具有高密度的活性氢键结合位点。此外,利用密度泛函理论(DFT)模拟吸附前后的过程,验证了 MBC@poly(AAm-ChCl)的高选择性归因于双构型氢键的形成。这项研究为制备高选择性生物炭用于药物检测前的预处理提供了支持。

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