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功能化和交联聚酮对用于废水处理的铜离子化学反应性的计算洞察

Computational Insights on the Chemical Reactivity of Functionalized and Crosslinked Polyketones to Cu Ion for Wastewater Treatment.

作者信息

Ortega Daniela E, Cortés-Arriagada Diego, Araya-Hermosilla Rodrigo

机构信息

Centro Integrativo de Biología y Química Aplicada (CIBQA), Facultad de Salud, Universidad Bernardo O'Higgins, General Gana 1702, Santiago 8370854, Chile.

Programa Institucional de Fomento a la Investigación, Desarrollo e Innovación (PIDi), Universidad Tecnológica Metropolitana, Ignacio Valdivieso 2409, San Joaquín, Santiago 8940577, Chile.

出版信息

Polymers (Basel). 2023 Jul 25;15(15):3157. doi: 10.3390/polym15153157.

Abstract

Today, the high concentrations of copper found in water resources result in an urgent problem to solve since human health and aquatic ecosystems have been affected. Functionalized crosslinked polyketone resins (XLPK) have demonstrated high performance for the uptake of heavy metals in water solutions. In addition, its green chemical synthesis makes these resins very attractive as sorbents for metal ions contained in wastewater. XLPK are not soluble in aqueous media and do not require any catalyst, solvent, or harsh conditions to carry out the uptake process. In this paper, a series of functionalized XLPK with pending amino-derivatives namely; butylamine (BA), amino 2-propanol (A2P), 4-(aminomethyl) benzoic acid (HAMC), 6-aminohexanoic acid (PAMBA), and 1,2 diamino propane (DAP) directly attached to the pyrrole backbone of the polymers and crosslinked by di-amine derivatives was investigated using Density Functional Theory (DFT) calculations. Our computational analysis revealed that dipole-dipole interactions played a crucial role in enhancing the adsorption of Cu ions onto XLPKs. The negatively charged ketone moieties and functional groups within XLPKs were identified as key adsorption sites for the selective binding of Cu ions. Additionally, we found that XLPKs exhibited strong electrostatic interactions primarily through the -NH and -C=O groups. Evaluation of the adsorption energies in XLPK-Cu(II) complexes showed that the DAP-Cu(II) complex exhibited the highest stability, attributed to strong Cu(II)-N binding facilitated by the amino moiety (-NH). The remaining XLPKs displayed binding modes involving oxygen atoms (Cu(II)-O) within the ketone moieties in the polymer backbone. Furthermore, the complexation and thermochemical analysis emphasized the role of the coordinator atom (N or O) and the coordinating environment, in which higher entropic effects involved in the adsorption of Cu ions onto XLPKs describes a lower spontaneity of the adsorption process. The adsorption reactions were favored at lower temperatures and higher pressures. These findings provide valuable insights into the reactivity and adsorption mechanisms of functionalized and crosslinked polyketones for Cu uptake, facilitating the design of high-performance polymeric resins for water treatment applications.

摘要

如今,水资源中发现的高浓度铜导致了一个亟待解决的问题,因为人类健康和水生生态系统已受到影响。功能化交联聚酮树脂(XLPK)已证明在水溶液中对重金属的吸收具有高性能。此外,其绿色化学合成使这些树脂作为废水中所含金属离子的吸附剂非常具有吸引力。XLPK不溶于水介质,并且在进行吸收过程时不需要任何催化剂、溶剂或苛刻条件。在本文中,使用密度泛函理论(DFT)计算研究了一系列带有悬垂氨基衍生物的功能化XLPK,即丁胺(BA)、氨基2 - 丙醇(A2P)、4 - (氨基甲基)苯甲酸(HAMC)、6 - 氨基己酸(PAMBA)和1,2 - 二氨基丙烷(DAP),它们直接连接到聚合物的吡咯主链上并通过二胺衍生物交联。我们的计算分析表明,偶极 - 偶极相互作用在增强铜离子在XLPK上的吸附方面起着关键作用。XLPK内带负电荷的酮基和官能团被确定为铜离子选择性结合的关键吸附位点。此外,我们发现XLPK主要通过 - NH和 - C = O基团表现出强烈的静电相互作用。对XLPK - Cu(II)配合物吸附能的评估表明,DAP - Cu(II)配合物表现出最高的稳定性,这归因于氨基部分( - NH)促进的强Cu(II) - N结合。其余的XLPK显示出涉及聚合物主链中酮基内氧原子(Cu(II) - O)的结合模式。此外,络合和热化学分析强调了配位原子(N或O)和配位环境的作用,其中铜离子在XLPK上吸附过程中涉及的较高熵效应描述了吸附过程较低的自发性。吸附反应在较低温度和较高压力下更有利。这些发现为功能化和交联聚酮对铜吸收的反应性和吸附机制提供了有价值的见解,有助于设计用于水处理应用的高性能聚合物树脂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c696/10420987/ffef1f2086e9/polymers-15-03157-sch001.jpg

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