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首页> 外文期刊>Electrochimica Acta >The properties of the polyethylene glycol complex PEG(Na+)(Cu+) on the copper electrodeposited layer by Time-of-Flight Secondary-Ion Mass Spectrometry. The new insights
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The properties of the polyethylene glycol complex PEG(Na+)(Cu+) on the copper electrodeposited layer by Time-of-Flight Secondary-Ion Mass Spectrometry. The new insights

机译:通过飞行时间二次离子质谱法通过铜电沉积层上聚乙二醇复合物PEG(Na +)(Cu +)的性质。 新见解

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The properties of polyethylene glycol PEG(Na+)(Cu+) complex on the copper electrodeposition layer was studied by Time-of-Flight Secondary-Ion Mass Spectrometry (TOF-SIMS). The most stable PEG(Na+) fragment, C11H22O6Na+, consists of the central sodium ion surrounded by six ethereal oxygens atoms completed with a pseudo-crown ring. The mechanism of fragmentation pathways leading to the characteristic fragments for complexes PEG(Na+) and smaller fragments PEG(Cu+) was extensively discussed. The adsorption of PEG onto copper is stabilized by counterion effect of sodium ion with the chloride adlayer and hydrophobic interaction. Hydrophobic groups can be oriented towards the chloride adlayer, whilst ethereal oxygen with central sodium ion towards the electrolyte. Consecutively, additional bonds between ethereal oxygen of PEG and copper ions Cu+ (in the CuCl form), identified as a fragments C4H8O2Cu+, stabilize and increase adsorption of PEG molecules. The substitution of HCI as a source of Cl- onto NaCl at adjusted concentration, diminishes the suppressing abilities of PEG. Under an optimal Na+/Cl- ratio adsorption of PEG also occurs under an open circuit potential. The mechanism of the interaction between complex PEG(Na+)(Cu+) and the chloride adlayer and its importance for a suppressing abilities was provided. Adsorption of PEG(Na+) is strongly dependent on the applied electrode potential. It was also demonstrated that nine charged sodium sites are separated by linking chains, consisting of approximately 12 monomer CH2CH2O units. Our results show that the contamination of copper sulfate by sodium ions plays an important role as a source of sodium ion in forming pseudocrown ethers by polyethylene glycol. Due to this reason, the optimization protocols for suppressing abilities of PEG should take into account molar ratio Na+/Cl- as well as their concentrations. The study proves that a combination of cyclic voltammetry (CV) with TOF-SIMS under the static regime, where substrate wire is withdrawn from a bath in a controlled manner under electrodeposition condition is an extremely powerful tool for the evaluation of changes in chemistry species on the copper surface under real electrodeposition condition. (C) 2020 The Authors. Published by Elsevier Ltd.
机译:通过飞行时间二次离子质谱(TOF-SIM)研究了铜电沉积层上的聚乙二醇PEG(Na +)(Cu +)复合物的性质。最稳定的PEG(Na +)片段C11H22O6NA +,由具有伪冠环完成的六个醚氧体原子包围的中央钠离子组成。广泛地讨论了通向复合物PEG(Na +)和较小碎片PEG(Cu +)的特征片段的碎片途径的机制。通过钠离子与氯化物阳离子和疏水相互作用的抗衡效应稳定PEG在铜中的吸附。疏水基团可以定向朝向氯化物亚丁,同时具有中央钠离子朝向电解质的醚氧。连续地,PEG和铜离子的醚氧与Cu +(CuCl形式中)之间的额外键,鉴定为片段C4H8O2Cu +,稳定和增加PEG分子的吸附。将HCI作为Cl-上的浓度取代为NaCl的源,减少了PEG的抑制能力。在最佳Na + / Cl-比下,PEG的吸附也发生在开路电位下。提供了复杂PEG(Na +)(Cu +)和氯化物adlayer之间相互作用的机制及其对抑制能力的重要性。 PEG(NA +)的吸附强烈地取决于所施加的电极电位。还证明,通过将链接链分离9个带电钠位点,由约12个单体CH 2 CH 2 O单元组成。我们的研究结果表明,钠离子硫酸铜的污染在通过聚乙二醇形成伪离子中的钠离子来源起着重要作用。由于这个原因,用于抑制PEG能力的优化方案应考虑摩尔比Na + / Cl-以及它们的浓度。该研究证明,在电沉积条件下以受控方式从浴中从浴中取出基材线的循环伏安法(CV)与TOF-SIM的组合是一种极其强大的工具,用于评估化学物种的变化实际电沉积条件下的铜表面。 (c)2020作者。 elsevier有限公司出版

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