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基于共轭微孔聚合物的“,,','‑四苯基联苯胺用于罗丹明B吸附的潜力解锁:协同实验与密度泛函理论视角”

Unlocking the Potential of ,,','‑Tetraphenylbenzidine Based on Conjugated Microporous Polymers for Rhodamine B Adsorption: A Synergistic Experimental and Density Functional Theory Perspective.

作者信息

Kotp Mohammed G, Mohamed Mohamed Gamal, Wang Pei-Tzu, Hassan Ahmed E, Elewa Ahmed M, Kuo Shiao-Wei

机构信息

Department of Materials and Optoelectronic Science, Center for Functional Polymers and Supramolecular Materials, National Sun Yat-Sen University, Kaohsiung 804, Taiwan.

Chemistry Department, Faculty of Science, Assiut University, Assiut 71515, Egypt.

出版信息

ACS Polym Au. 2025 Jun 10;5(4):379-393. doi: 10.1021/acspolymersau.5c00025. eCollection 2025 Aug 13.

Abstract

This study presents the synthesis and construction of two innovative conjugated microporous polymers (CMPs), TPBZ-PyT CMP and TPBZ-TPET CMP, which incorporate pyrene (Py) and tetraphenylethene (TPE) subunits, respectively. These subunits are selected for their complementary properties, with the TPE moiety offering enhanced flexibility compared to the more rigid Py structure. The flexibility of TPE is hypothesized to improve the adsorption performance of the CMPs for removing rhodamine B (RhB) dye from aqueous solutions. The TPBZ CMPs were characterized using a suite of techniques, including Brunauer-Emmett-Teller (BET) surface area analysis, SEM, and FTIR. Batch adsorption experiments demonstrated that TPBZ-TPET CMP achieved a remarkable RhB removal efficiency of 49.49% within the first 30 min, reaching 98.72% after 60 min. In comparison, TPBZ-PyT CMP attained a maximum removal efficiency of 53.49% at the 60 min mark. Kinetic studies revealed distinct adsorption mechanisms for the two TPBZ CMPs. The adsorption process for TPBZ-TPET CMP was analyzed using a pseudo-second-order model, showing that chemisorption is the dominant mechanism. Meanwhile, TPBZ-PyT CMP exhibited pseudo-first-order kinetics, suggesting a different rate-limiting step. These findings highlight the critical role of subunit flexibility in designing CMPs for enhanced adsorption performance. The superior efficiency of TPBZ-TPET CMP underscores the potential of flexibility-engineered CMPs in advancing water purification technologies and addressing dye contamination in aquatic environments.

摘要

本研究介绍了两种创新型共轭微孔聚合物(CMPs),即TPBZ-PyT CMP和TPBZ-TPET CMP的合成与构建,它们分别包含芘(Py)和四苯乙烯(TPE)亚基。选择这些亚基是基于它们的互补特性,与刚性更强的Py结构相比,TPE部分具有更高的柔韧性。据推测,TPE的柔韧性可提高CMPs从水溶液中去除罗丹明B(RhB)染料的吸附性能。使用包括布鲁诺尔-埃米特-泰勒(BET)表面积分析、扫描电子显微镜(SEM)和傅里叶变换红外光谱(FTIR)在内的一系列技术对TPBZ CMPs进行了表征。批量吸附实验表明,TPBZ-TPET CMP在最初30分钟内对RhB的去除效率达到了显著的49.49%,60分钟后达到98.72%。相比之下,TPBZ-PyT CMP在60分钟时达到的最大去除效率为53.49%。动力学研究揭示了两种TPBZ CMPs不同的吸附机制。使用准二级模型分析了TPBZ-TPET CMP的吸附过程,结果表明化学吸附是主要机制。同时,TPBZ-PyT CMP表现出准一级动力学,表明存在不同的限速步骤。这些发现突出了亚基柔韧性在设计用于提高吸附性能的CMPs中的关键作用。TPBZ-TPET CMP的卓越效率凸显了通过柔韧性设计的CMPs在推进水净化技术和解决水生环境中的染料污染方面的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0040/12355617/eb37714b4ebc/lg5c00025_0001.jpg

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