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Aggregation of reduced graphene oxide and its nanohybrids with magnetite and elemental silver under environmentally relevant conditions

机译:在环境相关条件下还原性氧化石墨烯及其纳米杂化物与磁铁矿和元素银的聚集

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摘要

The aggregation and long-term (25 d) sedimentation behaviors of reduced graphene oxide (RGO) and its three successively self-assembled nanohybrids with magnetite (Fe3O4) and zerovalent silver (Ag0) nanoparticles have been investigated. The aggregation behaviors of the nanomaterials in NaCl and CaCl2 were found to be in good agreement with the Derjaguin–Landau–Verwey–Overbeek (DLVO)-type interactions and the Schulze-Hardy rule. The colloidal stability decreased with the increasing ratios of the edge-based functional groups (COO and C=O) to the total oxygen-containing functional groups decorated on the basal planes (C–O) and edges of RGO, as quantified by X-ray photoelectron spectroscopy analysis. In the presence of natural organic matter (NOM), the aggregation of RGO and its nanohybrids was greatly inhibited as a result of the enhanced electrosteric repulsions arising from the adsorbed NOM macromolecules. The long-term sedimentation kinetics results showed that the RGO nanohybrids were less stable in synthetic groundwater containing higher electrolyte concentrations, which was likely because of the greater charge screening or neutralization effect imparted by higher monovalent and divalent electrolyte concentrations. Our findings have important implications for evaluating the environmental impact and toxicity of the emerging class of multifunctional nanohybrids whose environmental behaviors are currently largely unknown.
机译:研究了还原氧化石墨烯(RGO)及其与磁铁矿(Fe3O4)和零价银(Ag 0 )的三个连续自组装纳米杂化物的聚集和长期(25 d)沉积行为。 。发现纳米材料在NaCl和CaCl2中的聚集行为与Derjaguin–Landau–Verwey–Overbeek(DLVO)型相互作用和Schulze-Hardy规则高度吻合。胶体稳定性随着边缘基官能团(COO 和C = O)与在基面(C-O)和边缘上装饰的总含氧官能团的比率增加而降低X射线光电子能谱分析定量了RGO的含量。在天然有机物(NOM)的存在下,RGO及其纳米杂化物的聚集被大大抑制,这是由于吸附的NOM大分子引起的增强的空间立体斥力。长期的沉降动力学结果表明,RGO纳米杂化物在含有较高电解质浓度的合成地下水中不稳定,这很可能是由于较高的一价和二价电解质浓度赋予了更高的电荷筛选或中和作用。我们的发现对评估新兴的多功能纳米杂化剂的环境影响和毒性具有重要意义,而新型纳米杂化剂的环境行为目前尚不清楚。

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