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Size and Shape-Dependent Solubility of CuO Nanostructures

机译:CuO纳米结构的尺寸和形状相关的溶解度

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摘要

In our theoretical study, the enhanced solubility of CuO nanoparticles in water saturated by air is predicted based on a simple thermodynamic model. CuO is considered in the form of nanoparticles with various shapes. The interfacial energy of a solid CuO/dilute aqueous solution interface was assessed by applying the average CuO surface energy and contact angle of a sessile drop of water. The equilibrium CuO solubility was calculated using Gibbs energy minimization technique. For the smallest spherical nanoparticles considered in this work ( = 2 nm), the solubility is significantly higher than the solubility of bulk material. In the case of cylindrical nanoparticles, the solubility increase is even more considerable. The CuO spherical nanoparticles solubility was also calculated using the Ostwald–Freundlich equation which is known to overestimate the solubility as discussed in this contribution.
机译:在我们的理论研究中,基于简单的热力学模型预测了CuO纳米颗粒在空气饱和的水中的溶解度增加。 CuO被认为是具有各种形状的纳米颗粒的形式。通过应用平均CuO表面能和无水水滴的接触角来评估固态CuO /稀水溶液界面的界面能。使用吉布斯能量最小化技术计算平衡的CuO溶解度。对于这项工作中考虑的最小球形纳米颗粒(= 2 nm),溶解度明显高于块状材料的溶解度。在圆柱形纳米颗粒的情况下,溶解度的增加甚至更大。还使用Ostwald-Freundlich方程计算了CuO球形纳米颗粒的溶解度,已知该方程会高估溶解度。

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