Literature DB >> 32073022

Effective removal of inorganic and organic heavy metal pollutants with poly(amino acid)-based micromotors.

Ting Hou1, Shanshan Yu1, Minfeng Zhou1, Min Wu1, Jie Liu1, Xiaoli Zheng1, Jinxing Li2, Joseph Wang2, Xiaolei Wang1.   

Abstract

The increasing extent of heavy metal pollution all over the world has resulted in many serious environmental and public health problems. To solve these problems, effective technologies for water treatment are urgently needed. Recent efforts have focused on the development of self-driven micro/nanomotors for eliminating inorganic and organic pollutants in an aqueous system. These synthetic micro/nanomotors can increase mass transfer through the transportation of reactive species, leading to higher decontamination rates. Here, we report a surface-tunable poly(amino acid) (PAA)-based micromotor. The property of the outer layer can be adjusted by changing the type and proportion of amino acids according to real requirements. Three kinds of micromotors are fabricated, which consist of a microtube composed of PAAs (i.e., polyaspartic acid (PAsp), polycysteine (PCys) or a copolymer of both (PAsp-Cys)), a thin Ni intermediate layer, and a Pt inner layer. Due to the presence of various side-chain functional groups (e.g., amino, carboxyl, and sulfhydryl) on the surface of the poly(amino acid)s, these micromotors can be used as effective scavengers for the removal of heavy metals (i.e., Cd2+, Pb2+ and methylmercury). Compared with PAsp and PCys micromotors, the PAsp-Cys micromotor shows good acid resistance and can simultaneously adsorb various kinds of heavy metals with high removal efficiency. The outer layer of the surface-tunable micromotor has good biocompatibility and adsorption efficiency, which holds considerable promise for environmental and biomedical applications.

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Year:  2020        PMID: 32073022     DOI: 10.1039/c9nr09813e

Source DB:  PubMed          Journal:  Nanoscale        ISSN: 2040-3364            Impact factor:   7.790


  3 in total

1.  Nanomotor-based adsorbent for blood Lead(II) removal in vitro and in pig models.

Authors:  Meng Wang; Tianyi Bao; Wenqiang Yan; Dan Fang; Yueqi Yu; Zhiyong Liu; Guoyong Yin; Mimi Wan; Chun Mao; Dongquan Shi
Journal:  Bioact Mater       Date:  2020-10-23

2.  Pick up and dispose of pollutants from water via temperature-responsive micellar copolymers on magnetite nanorobots.

Authors:  Jayraj V Vaghasiya; Carmen C Mayorga-Martinez; Stanislava Matějková; Martin Pumera
Journal:  Nat Commun       Date:  2022-03-01       Impact factor: 17.694

Review 3.  Biocompatible micromotors for biosensing.

Authors:  Roberto Maria-Hormigos; Beatriz Jurado-Sánchez; Alberto Escarpa
Journal:  Anal Bioanal Chem       Date:  2022-08-31       Impact factor: 4.478

  3 in total

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