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A sulfur, nitrogen dual-doped porous graphene nanohybrid for ultraselective Hg(ii) separation over Pb(ii) and Cu(ii)

机译:硫、氮dual-doped多孔石墨烯nanohybrid ultraselective Hg (ii)分离在Pb (ii)和铜(ii)

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摘要

Two-dimensional (2D) porous graphene is attractive as a high-permeability membrane for ionic and molecular separation. Here, we propose a sulfur, nitrogen dual-doped 2D porous graphene (SNPG) nanohybrid by adopting a facile one-step process. The resulting sandwich-like porous nanohybrid features uniform ion-gated nanopores for efficient transport of target heavy metal ions while blocking undesired ions, as well as abundant multi-binding ligands for selectively chelating permeated heavy metal ions. We show from systematic experiments that this SNPG nanohybrid exhibits outstanding selectivity and ability to separate Hg(ii) ions in mixtures with eight other metal ions. An excellent uptake capability (803 mg g(-1)) and high removal ability (>99%) within the entire pH range of 2-10 can be obtained. Given the specific 2D porous nanostructure and specific binding ligands, SNPG exhibits an ultrahigh separation factor towards Hg(ii) that is up to four orders of magnitude higher than those of Pb(ii), Cd(ii) and Cu(ii) ions, significantly higher than those of most reported adsorbents. These findings provide a new opportunity to develop selective materials and devices for applications such as efficient recognition, extraction and separation of target metal ions in complex aqueous environments.
机译:多孔石墨烯是二维(2 d)有吸引力作为离子膜效果分子分离。氮dual-doped二维多孔石墨烯(SNPG)nanohybrid采用一个简单的单步。结果夹层型多孔nanohybrid功能统一ion-gated纳米孔有效的交通目标重金属离子而阻塞干扰离子,以及丰富multi-binding选择性的配体螯合重金属离子渗透。从这SNPG系统实验杰出的选择性和nanohybrid展品能够独立Hg (ii)离子的混合物八其他金属离子。能力(803毫克g(1))和高去除能力(> 99%)2 - 10的整个pH值范围内可以获得。纳米结构和特定的配体结合,SNPG展示一个超高分离系数Hg (ii)四个数量级高于Pb (ii)、Cd (ii)和铜(ii)离子,显著高于大多数吸附剂。机会选择材料和发展设备等应用程序的效率识别、提取和分离的目标在复杂的水环境中金属离子。

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