Nanocolloidal Hydrogel for Heavy Metal Scavenging.

Alizadehgiashi, Moien; Khuu, Nancy; Khabibullin, Amir; Henry, Andria; Tebbe, Moritz; Suzuki, Toyoko; Kumacheva, Eugenia · ACS Nano · 2018

basic_science · Level V

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Abstract

We report a nanocolloidal hydrogel that combines the advantages of molecular hydrogels and nanoparticle-based scavengers of heavy metal ions. The hydrogel was formed by the chemical cross-linking of cellulose nanocrystals and graphene quantum dots. Over a range of hydrogel compositions, its structure was changed from lamellar to nanofibrillar, thus enabling the control of hydrogel permeability. Using a microfluidic approach, we generated nanocolloidal microgels and explored their scavenging capacity for Hg<sup>2+</sup>, Cu<sup>2+</sup>, Ni<sup>2+</sup>, and Ag<sup>+</sup> ions. Due to the large surface area and abundance of ion-coordinating sites on the surface of nanoparticle building blocks, the microgels exhibited a high ion-sequestration capacity. The microgels were recyclable and were used in several ion scavenging cycles. These features, in addition to the sustainable nature of the nanoparticles, make this nanocolloidal hydrogel a promising ion-scavenging material.