Literature DB >> 26355685

Selective Adsorption of Gd(3+) on a Magnetically Retrievable Imprinted Chitosan/Carbon Nanotube Composite with High Capacity.

Kai Li, Qiang Gao, Gayatri Yadavalli1, Xiang Shen, Hanwu Lei1, Bo Han, Kaisheng Xia, Chenggang Zhou.   

Abstract

A novel magnetic imprinting nanotechnology for selective capture of Gd(3+) from a mixed solution of rare earth ions was developed by simply adding Gd(3+)-imprinted chitosan/carbon nanotube nanocomposite (IIP-CS/CNT) and silica-coated magnetite nanoparticle (SiO2@Fe3O4). The IIP-CS/CNT was prepared for the first time via a facile "surface deposition-crosslinking" method, exhibiting a well-defined coating structure. Interestingly, the neighboring IIP-CS/CNT monomers were held together as bundles, like a network, containing abundant interstitial spaces. When IIP-CS/CNT and SiO2@Fe3O4 were dispersed in a mixed solution of rare earth ions, the magnetic SiO2@Fe3O4 submicrospheres would be trapped in or adhere to the IIP-CS/CNT network, leading to the magnetization of IIP-CS/CNT; meanwhile, Gd(3+) ions could be selectively captured by the magnetized IIP-CS/CNT. Saturation adsorption capacity for Gd(3+) was up to 88 mg g(-1) at 303.15 K, which is significantly higher than the Gd(3+) adsorption capacities for the reported rare earth ion-imprinted adsorbents over recent years. The selectivity coefficients relative to La(3+) and Ce(3+) were 3.50 and 2.23, respectively, which are very similar to those found for other reported CS-based imprinted materials. Moreover, the imprinted adsorbents could be easily and rapidly retrieved by an external magnetic field without the need of additional centrifugation or filtration, greatly facilitating the separation process. Test of reusability demonstrated that the magnetized IIP-CS/CNT could be repeatedly used without any significant loss in binding capacity. Overall, this work not only provides new insights into the fabrication of magnetic imprinted CS-based composite, but also highlights its application for selective adsorption toward rare earth ions.

Entities:  

Keywords:  Gd3+; imprinted nanocomposite; magnetically retrievable; selective adsorption

Year:  2015        PMID: 26355685     DOI: 10.1021/acsami.5b07560

Source DB:  PubMed          Journal:  ACS Appl Mater Interfaces        ISSN: 1944-8244            Impact factor:   9.229


  3 in total

Review 1.  Recent Developments in Chitosan-Based Adsorbents for the Removal of Pollutants from Aqueous Environments.

Authors:  Daniele C da Silva Alves; Bronach Healy; Luiz A de Almeida Pinto; Tito R Sant'Anna Cadaval; Carmel B Breslin
Journal:  Molecules       Date:  2021-01-23       Impact factor: 4.411

2.  Nitrogen-doped nanoporous graphene induced by a multiple confinement strategy for membrane separation of rare earth.

Authors:  Hongxin Tan; Xin Zhang; Zhan Li; Qing Liang; Jinsheng Wu; Yanli Yuan; Shiwei Cao; Jia Chen; Juewen Liu; Hongdeng Qiu
Journal:  iScience       Date:  2020-12-10

3.  Rational fabrication of a new ionic imprinted carboxymethyl chitosan-based sponge for efficient selective adsorption of Gd(iii).

Authors:  Enli Liu; Junyou Shi; Xue Lin; Wenbiao Xu; Liyun Feng; Yuanzhi Hong
Journal:  RSC Adv       Date:  2022-01-24       Impact factor: 3.361

  3 in total

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