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Perovskite composite material coated with polydopamine for adsorption of heavy metal ions

Materials Science and Engineering B-Advanced Functional Solid-State Materials [2024]
Guojuan Zhang, Zhipeng Dai, Yujing Guo, Jinzhong Zhao, Yujie Han
ABSTRACT

In recent years, increased environmental pollution has become a major societal concern, since quite a few people experienced various diseases caused by heavy metal ion pollution. Rare earth oxide perovskite based adsorbents have been applied in heavy metal ions removal on account of a special affinity. However, perovskite tending to agglomeration promoted an urgent and necessary search for protective agents. Here, the rare earth oxide perovskite PDA@LaCo 0.35 Ni 0.65 O 3 was synthesized by introducing PDA onto LaCo 0.35 Ni 0.65 O 3 structure via hydrothermal method. The PDA providing with large specific surface area and oxygen-containing functional groups can enhance the adsorption capacity of nanomaterials for heavy metal ions in water. The as-obtained PDA@LaCo 0.35 Ni 0.65 O 3 displayed maximum adsorption capacity of 142.49 mg∙g −1 , 96.30 mg∙g −1 , 105.12 mg∙g −1 for Cu 2+ , Hg 2+ , Pb 2+ . The proposed PDA@LaCo 0.35 Ni 0.65 O 3 enabled to achieve excellent removal rates toward three heavy metal ions. This work brings new opportunities for sorbents innovation in the field of sewage treatment.

MATERIALS

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