Guo Yonggui, Wang Lida, Sun Jianteng, Qi Zhixian, Hu Jingwen, Huang Yue, Chen Ying, Wei Junfu, Wang Xiaolei, Kong Zhiyun, Zhang Huan, Zhang Xiaoqing, Wang Huicai
State Key Laboratory of Separation Membranes and Membrane Processes, Tiangong University, Tianjin 300387, China; School of Chemical Engineering and Technology, Tiangong University, Tianjin 300387, China.
State Key Laboratory of Separation Membranes and Membrane Processes, Tiangong University, Tianjin 300387, China; School of Environmental Science and Engineering, Tiangong University, Tianjin 300387, China.
J Colloid Interface Sci. 2024 Jan;653(Pt A):707-720. doi: 10.1016/j.jcis.2023.09.056. Epub 2023 Sep 19.
In order to address the issues of the time-consuming, the low density of functional groups and the instability of mussel-inspired adsorbents, an efficient in situ cross-linked mussel-inspired coating-assisted macromolecular grafting strategy was proposed to prepare a polyacrylic acid (PAA) grafted polypropylene nonwoven (PP-g-PAA) for the efficient removal of heavy metal ions. The mussel-inspired coating was formed by rapid deposition in the presence of oxidizing agents and polyamines, and then thiol-terminated polyacrylic acid (PAA-SH) prepared by thiol-ene click reaction and glutaraldehyde were added in situ, and then PAA brushes were introduced on the surface of the polypropylene nonwoven via the Michael addition Schiff base reaction between the thiol and o-benzoquinone, and the improvement of the stability of the adsorbent was achieved through in situ formation of the three-dimensional cross-linked structure. A high density carboxyl group functionalized adsorbent with a grafting rate up to 38.98% was obtained, which also exhibited unprecedented tolerance to strong acid, alkali and polar organic solvents. Meanwhile, grafting on polyester nonwovens, sponges and PVDF membrane substrates confirmed the versatility of the proposed method. The PP-g-PAA was characterized by SEM, IR and XPS, and the adsorption behaviors of the adsorbent for Pb, Cu and Cd were systematically investigated. The results showed that the adsorption capacity of PP-g-PAA was nearly twice as high as that of the mussel-inspired adsorbent. The adsorption mechanism was also well investigated.
为了解决贻贝启发式吸附剂存在的耗时、官能团密度低和稳定性差等问题,提出了一种高效的原位交联贻贝启发式涂层辅助大分子接枝策略,以制备用于高效去除重金属离子的聚丙烯酸(PAA)接枝聚丙烯无纺布(PP-g-PAA)。贻贝启发式涂层是在氧化剂和多胺存在下通过快速沉积形成的,然后原位加入通过硫醇-烯点击反应制备的巯基封端聚丙烯酸(PAA-SH)和戊二醛,随后通过硫醇与邻苯醌之间的迈克尔加成席夫碱反应在聚丙烯无纺布表面引入PAA刷,并通过原位形成三维交联结构实现吸附剂稳定性的提高。获得了接枝率高达38.98%的高密度羧基官能化吸附剂,其对强酸、强碱和极性有机溶剂也表现出前所未有的耐受性。同时,在聚酯无纺布、海绵和PVDF膜基材上的接枝证实了该方法的通用性。采用扫描电子显微镜(SEM)、红外光谱(IR)和X射线光电子能谱(XPS)对PP-g-PAA进行表征,并系统研究了该吸附剂对Pb、Cu和Cd的吸附行为。结果表明,PP-g-PAA的吸附容量几乎是贻贝启发式吸附剂的两倍。还对吸附机理进行了深入研究。