Effective removal of toxic mercury(ii) from aqueous media is a primary challenge for public health and environmental protection. In this work, dendritic mesoporous silica nanoparticles modified with thiol moieties (denoted as TDMSNs) are used as nanoadsorbents to trap mercury(ii) ions. It is demonstrated that the exceptionally high density and accessibility of thiol moieties are both necessary to achieve efficient mercury(ii) decontamination. TDMSNs with the highest surface thiol group density of 283.2 μmol g exhibit a Hg(ii) adsorption capacity of 1502.4 mg g, outperforming reported thiolated adsorbents. The large and well-exposed mesopores of TDMSNs enable fast adsorption kinetics within 5 min to reduce the mercury(ii) concentration from ...
Industrial pollution by heavy metal ions such as Hg2+ and Ag+ is a universal problem owing to the to...
We report a novel nanocrystals (NCs) sorbent, which shows an extraordinary adsorption capacity to aq...
In this study, a novel mesoporous conjugate adsorbent (MCA) was fabricated by directly anchoring the...
To find a more stable adsorbent for the selective removal of mercury ions, a new mesoporous adsorben...
Background: Hg(II) is one of the most toxic metals and has received particular attention in environm...
Hg/Hg(II) have been recognized as being highly poisonous to humans as they cause severe health and ...
Stoichiometrically controlled thiol-functionalized mesoporous silica particles are synthesized by a ...
Highly effective and highly efficient decontamination of mercury from aqueous media remains a seriou...
Mercury is a neurotoxic metal at very low concentrations and can lead to severe human health problem...
Mercury is one of the most toxic metals present in the environment. Adsorption has been proposed amo...
AbstractThe SiO2 shell was coated on Fe3O4 nanoparticle by hydrolyzation of Na2SiO3, and then thiol ...
In this work, novel adsorbents based on 3D hierarchical silica monoliths functionalized with thiol g...
This research reports a new mercury adsorbent in which Fe3O4 as a core was embedded into the shell o...
The adsorption of ionic mercury(II) from aqueous solution on functionalized hydride silicon material...
<div><p>Mercury adsorption by silica and maghemite nanoparticles (NPs) was studied with the aim of c...
Industrial pollution by heavy metal ions such as Hg2+ and Ag+ is a universal problem owing to the to...
We report a novel nanocrystals (NCs) sorbent, which shows an extraordinary adsorption capacity to aq...
In this study, a novel mesoporous conjugate adsorbent (MCA) was fabricated by directly anchoring the...
To find a more stable adsorbent for the selective removal of mercury ions, a new mesoporous adsorben...
Background: Hg(II) is one of the most toxic metals and has received particular attention in environm...
Hg/Hg(II) have been recognized as being highly poisonous to humans as they cause severe health and ...
Stoichiometrically controlled thiol-functionalized mesoporous silica particles are synthesized by a ...
Highly effective and highly efficient decontamination of mercury from aqueous media remains a seriou...
Mercury is a neurotoxic metal at very low concentrations and can lead to severe human health problem...
Mercury is one of the most toxic metals present in the environment. Adsorption has been proposed amo...
AbstractThe SiO2 shell was coated on Fe3O4 nanoparticle by hydrolyzation of Na2SiO3, and then thiol ...
In this work, novel adsorbents based on 3D hierarchical silica monoliths functionalized with thiol g...
This research reports a new mercury adsorbent in which Fe3O4 as a core was embedded into the shell o...
The adsorption of ionic mercury(II) from aqueous solution on functionalized hydride silicon material...
<div><p>Mercury adsorption by silica and maghemite nanoparticles (NPs) was studied with the aim of c...
Industrial pollution by heavy metal ions such as Hg2+ and Ag+ is a universal problem owing to the to...
We report a novel nanocrystals (NCs) sorbent, which shows an extraordinary adsorption capacity to aq...
In this study, a novel mesoporous conjugate adsorbent (MCA) was fabricated by directly anchoring the...