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Effects of pH and electrolytes on the sheet-to-sheet aggregation mode of graphene oxide in aqueous solutions

机译:pH与电解质对水溶液中氧化石墨氧化物片材聚集方式的影响

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In this work, the aggregation mode of graphene oxide (GO) was identified. Atomic force microscopy (AFM) characterization indicated that protonation at lower pH was more efficient in accelerating the stacking of GO than binding with metal ions, and molecular dynamics (MD) simulations revealed that this should be attributed to the different favorable aggregation modes under different aqueous chemistries. GO tended to aggregate in the face-to-face or partial face-to-face mode at lower pH, and in the partial face-to-face, edge-to-edge, or point-to-point mode at higher pH with the presence of metal ions. To elucidate the mechanisms where pH and metal ions can exert distinct effects on the aggregation mode of GO, density functional theory calculations were performed. The results demonstrated that the favorable face-to-face and partial face-to-face aggregation at lower pH was mainly guided by the stronger pi-pi interaction and suppressed water-mediated steric hindrance; however, hydrogen bond and vdW interactions were not important in determining the aggregation mode. Overall, the distinct aggregation mode of GO under different aqueous chemistries will shed light on predicting the toxicity and environmental applications of GO.
机译:在这项工作中,鉴定了石墨烯(GO)的聚集方式。原子力显微镜(AFM)表征表明,在加速比金属离子的结合的堆叠下,在较低的pH下的质子化更有效,并且分子动力学(MD)模拟显示,这应该归因于不同水性下的不同良好的聚集模式。化学物质。在较低的pH下倾向于在面对面或部分面对面模式中汇集,并且在较高的pH下在部分面对面,边缘到边缘或点对点模式中存在金属离子。为了阐明pH和金属离子可以对GO的聚集模式发出明显影响的机制,进行了密度泛函理论计算。结果表明,较低pH下的良好面对面和部分面对面聚集主要是由较强的PI-PI相互作用和抑制水介导的空间障碍引导;然而,在确定聚集模式时,氢键和VDW相互作用在确定方面并不重要。总体而言,不同水化学物质下的不同聚集模式将阐明预测GO的毒性和环境应用。

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