Hg/Hg(II) have been recognized as being highly poisonous to humans as they cause severe health and environmental problems. Designing a suitable adsorbent decorated with an abundance of accessible chelating sites at the solid surface together with high affinity for heavy metals is a big challenge to overcoming mercury contamination. Here we report a new thioether-functionalized covalent triazine nanosphere, SCTN-1, which has been employed as a highly efficient adsorbent for the removal of toxic mercury from contaminated water with an excellent adsorption performance of 1253 and 813 mg g–1 for Hg2+ and Hg(0) respectively, which largely outperforms several recently reported thiol and thioether-functionalized adsorbents. Our kinetic studies su...
Two kinds of novel sulfhydryl functionalized covalent organic frameworks were fabricated as adsorben...
A 3D framework was effectively created by cross-linking graphene oxide nanosheets with 2,5-bis(((3-m...
The covalent triazine framework, CTF-1, served as host material for the in situ synthesis of Fe2O3 n...
Effective removal of toxic mercury(ii) from aqueous media is a primary challenge for public health a...
Mercury is one of the most toxic metals present in the environment. Adsorption has been proposed amo...
Highly effective and highly efficient decontamination of mercury from aqueous media remains a seriou...
Industrial pollution by heavy metal ions such as Hg2+ and Ag+ is a universal problem owing to the to...
Background: Hg(II) is one of the most toxic metals and has received particular attention in environm...
International audienceDeveloping functionalized 3D covalent organic frameworks (3D COFs) is critical...
This research reports a new mercury adsorbent in which Fe3O4 as a core was embedded into the shell o...
WOS: 000404690300006A novel sulfur-rich adsorbent, poly(BA-ala-co-sulfur), was synthesized by reacti...
Mercury is a neurotoxic metal at very low concentrations and can lead to severe human health problem...
The prolific growth of modern industrial practices has been accompanied by the extensive release of ...
The synthesis of a thiol-functionalized graphene composite with a unique three-dimensional porous st...
Design and synthesis of adsorbents for efficient decontamination of hazardous contaminants Hg2+ from...
Two kinds of novel sulfhydryl functionalized covalent organic frameworks were fabricated as adsorben...
A 3D framework was effectively created by cross-linking graphene oxide nanosheets with 2,5-bis(((3-m...
The covalent triazine framework, CTF-1, served as host material for the in situ synthesis of Fe2O3 n...
Effective removal of toxic mercury(ii) from aqueous media is a primary challenge for public health a...
Mercury is one of the most toxic metals present in the environment. Adsorption has been proposed amo...
Highly effective and highly efficient decontamination of mercury from aqueous media remains a seriou...
Industrial pollution by heavy metal ions such as Hg2+ and Ag+ is a universal problem owing to the to...
Background: Hg(II) is one of the most toxic metals and has received particular attention in environm...
International audienceDeveloping functionalized 3D covalent organic frameworks (3D COFs) is critical...
This research reports a new mercury adsorbent in which Fe3O4 as a core was embedded into the shell o...
WOS: 000404690300006A novel sulfur-rich adsorbent, poly(BA-ala-co-sulfur), was synthesized by reacti...
Mercury is a neurotoxic metal at very low concentrations and can lead to severe human health problem...
The prolific growth of modern industrial practices has been accompanied by the extensive release of ...
The synthesis of a thiol-functionalized graphene composite with a unique three-dimensional porous st...
Design and synthesis of adsorbents for efficient decontamination of hazardous contaminants Hg2+ from...
Two kinds of novel sulfhydryl functionalized covalent organic frameworks were fabricated as adsorben...
A 3D framework was effectively created by cross-linking graphene oxide nanosheets with 2,5-bis(((3-m...
The covalent triazine framework, CTF-1, served as host material for the in situ synthesis of Fe2O3 n...