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首页> 外文期刊>Journal of Molecular Liquids >Performance of doped graphene nanoadsorbents with first-row transition metals (Sc-Zn) for the adsorption of water-soluble trivalent arsenicals: A DFT study
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Performance of doped graphene nanoadsorbents with first-row transition metals (Sc-Zn) for the adsorption of water-soluble trivalent arsenicals: A DFT study

机译:掺杂石墨烯纳米坯料的性能与一排过渡金属(SC-Zn)进行水溶性三价砷的吸附:DFT研究

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摘要

The immobilization and removal of trivalent arsenic [As(III)] onto A-doped graphene (AG: AC(93)H(24)) nanoadsorbents with first-row transition metals (A: Sc-Zn) was characterized by means of theoretical computations in the gas phase and in an explicit/implicit solvent media. In the gas phase, AG adsorbents have a high affinity toward As(III), with adsorption energies in the range of 1.2-2.0 eV, where the chemical acid-base interaction takes place mainly by bidentate surface complexation like in mineral surfaces. Moreover, the adsorption stability is improved at least 229% compared to the adsorption onto intrinsic graphene. The different binding abilities emerge from the interplay and balance between intermolecular electrostatic interactions and repulsive steric terms due to Pauli repulsion; the best adsorbents show high intermolecular electrostatic energies E-els (-0.4 eV), and low contributions of the repulsive steric terms as a result of the decrease in the number of 3d electrons. The analysis of the stability in the water model indicates that all the adsorbents (excepting ScG and ZnG) could be considered as remarkable potential adsorbents of trivalent arsenicals from aqueous sources at neutral pH, and mainly without the competition of water molecules by the adsorption active sites. The bidentate surface complexation is not affected underwater, and the chemisorption remains as the main adsorption mechanism whereby As(III) is immobilized. Therefore, doped graphene with first-row transition metals could be considered as a new class of remarkable nanoadsorbents for wastewater treatment and water purification, where in terms of energy saving, a pre-oxidation process to convert As(III) to As(V) is not required. (C) 2019 Elsevier B.V. All rights reserved.
机译:通过理论表征,将三价砷[AS(III)]上的三价砷[AS(III)]纳米储物(A:SC-Zn)的纳盖液(A:SC-Zn)的特征在一起在气相和显式/隐含溶剂介质中的计算。在气相中,Ag吸附剂具有朝向(III)的高亲和力,吸附能量在1.2-2.0eV的范围内,其中化学酸碱相互作用主要通过双齿表面络合如在矿物表面中。此外,与吸附到本征石墨烯相比,吸附稳定性至少229%。不同的绑定能力从分子间静电相互作用和诸如Pauli排斥的反分子静电相互作用和排斥空间术语中出现的不同的结合能力;最佳吸附剂显示出高分子体静电能量E-ELS(-0.4eV),并且由于3D电子的数量的减小而导致排斥空间术语的低贡献。水模型中稳定性的分析表明,所有吸附剂(除SCG和ZNG)都可以被认为是来自中性pH的水性源的三价砷的显着潜在吸附剂,主要是通过吸附活性位点的水分子竞争。双齿表面络合不受水下影响,化学吸附仍然是主要吸附机制,由此(III)固定。因此,具有第一行过渡金属的掺杂石墨烯可以被认为是用于废水处理和水净化的新类别的非凡纳面片,其中,在节能方面,将作为(iii)转化为(v)的预氧化过程不需要。 (c)2019 Elsevier B.v.保留所有权利。

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