Literature DB >> 27662468

Aggregation, Adsorption, and Morphological Transformation of Graphene Oxide in Aqueous Solutions Containing Different Metal Cations.

Kaijie Yang1,2, Baoliang Chen1,2, Xiaoying Zhu1,2, Baoshan Xing3.   

Abstract

The colloidal behavior of graphene oxide (GO) has been extensively studied in the presence of common environmental cations, but the aggregation, adsorption, and morphological transformation of GO under heavy metal ions have not been investigated. We observed that heavy metal cations (Cr3+, Pb2+, Cu2+, Cd2+, Ag+) destabilized GO suspension more aggressively than common cations (Ca2+, Mg2+, Na+, K+). In addition to electric double-layer (EDL) suppression, heavy metal cations can easily cross the EDL, bind to GO surface, and then change the surface potential, which is a more efficient pathway for GO aggregation. According to aggregation kinetics, the destabilizing ability of cations follows the order of Cr3+ ≫ Pb2+ > Cu2+ > Cd2+ > Ca2+ > Mg2+ ≫ Ag+ > K+ > Na+. The destabilizing capability of metal cations is consistent with their adsorption affinity with GO, which is determined by their electronegativity and hydration shell thickness. GO nanosheets can be transformed to 1D tube-like carbon material, 2D multiple overlapped GO plane, and 3D sphere-like particles during aggregation, thereby combined to form a sphere-like aggregated GO, which is for the first time observed by TEM and AFM images. Therefore, the aggregation of GO 2D nanosheets follows the Schulze-Hardy rule, which is usually used for spherical particles. An integrative process of adsorption-transformation-aggregation is proposed to better understand the nanomaterial (e.g., GO) colloidal behavior, environmental risk, self-assembly process, and application as a novel adsorbent.

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Year:  2016        PMID: 27662468     DOI: 10.1021/acs.est.6b04235

Source DB:  PubMed          Journal:  Environ Sci Technol        ISSN: 0013-936X            Impact factor:   9.028


  15 in total

1.  Equilibrium adsorption study of the adsorptive removal of Cd2+ and Cr6+ using activated carbon.

Authors:  Weiliang Wang; Ying Liu; Xiaohui Liu; Baojun Deng; Shaoyong Lu; Yaru Zhang; Bin Bi; Zongming Ren
Journal:  Environ Sci Pollut Res Int       Date:  2018-06-29       Impact factor: 4.223

2.  Exploring the mechanisms of graphene oxide behavioral and morphological changes in zebrafish.

Authors:  Zaira Clemente; Gabriela Helena Silva; Miriam Celi de Souza Nunes; Diego Stéfani Teodoro Martinez; Claudia Vianna Maurer-Morelli; Andre Alexandre Thomaz; Vera Lúcia Scherholz Salgado Castro
Journal:  Environ Sci Pollut Res Int       Date:  2019-08-28       Impact factor: 4.223

Review 3.  Detection and Quantification of Graphene-Family Nanomaterials in the Environment.

Authors:  David G Goodwin; Adeyemi S Adeleye; Lipiin Sung; Kay T Ho; Robert M Burgess; Elijah J Petersen
Journal:  Environ Sci Technol       Date:  2018-03-30       Impact factor: 9.028

4.  Fate and Transformation of Graphene Oxide in Estuarine and Marine Waters.

Authors:  Adeyemi S Adeleye; Kay T Ho; Min Zhang; Yao Li; Robert M Burgess
Journal:  Environ Sci Technol       Date:  2019-04-30       Impact factor: 9.028

5.  Biomimetically Inspired Highly Homogeneous Hydrophilization of Graphene with Poly(l-DOPA): Toward Electroconductive Coatings from Water-Processable Paints.

Authors:  Anna Kuziel; Grzegorz Dzido; Rafał G Jędrysiak; Anna Kolanowska; Bertrand Jóźwiak; Juliette Beunat; Emil Korczeniewski; Monika Zięba; Artur P Terzyk; Noorhana Yahya; Vijay Kumar Thakur; Krzysztof K Koziol; Sławomir Boncel
Journal:  ACS Sustain Chem Eng       Date:  2022-05-10       Impact factor: 9.224

6.  Evaluation of the colloidal stability and adsorption performance of reduced graphene oxide-elemental silver/magnetite nanohybrids for selected toxic heavy metals in aqueous solutions.

Authors:  Chang Min Park; Dengjun Wang; Jonghun Han; Jiyong Heo; Chunming Su
Journal:  Appl Surf Sci       Date:  2019       Impact factor: 6.707

7.  Complex Roles of Solution Chemistry on Graphene Oxide Coagulation onto Titanium Dioxide: Batch Experiments, Spectroscopy Analysis and Theoretical Calculation.

Authors:  Shujun Yu; Xiangxue Wang; Rui Zhang; Tongtong Yang; Yuejie Ai; Tao Wen; Wei Huang; Tasawar Hayat; Ahmed Alsaedi; Xiangke Wang
Journal:  Sci Rep       Date:  2017-01-03       Impact factor: 4.379

8.  Organic Functionalized Graphene Oxide Behavior in Water.

Authors:  Changwoo Kim; Junseok Lee; Will Wang; John Fortner
Journal:  Nanomaterials (Basel)       Date:  2020-06-24       Impact factor: 5.076

9.  Discriminating between Different Heavy Metal Ions with Fullerene-Derived Nanoparticles.

Authors:  Erica Ciotta; Paolo Prosposito; Pietro Tagliatesta; Chiara Lorecchio; Lorenzo Stella; Saulius Kaciulis; Peiman Soltani; Ernesto Placidi; Roberto Pizzoferrato
Journal:  Sensors (Basel)       Date:  2018-05-10       Impact factor: 3.576

10.  Sulfonated Pentablock Copolymer Membranes and Graphene Oxide Addition for Efficient Removal of Metal Ions from Water.

Authors:  Simona Filice; Marta Mazurkiewicz-Pawlicka; Artur Malolepszy; Leszek Stobinski; Ryszard Kwiatkowski; Anna Boczkowska; Leon Gradon; Silvia Scalese
Journal:  Nanomaterials (Basel)       Date:  2020-06-12       Impact factor: 5.076

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