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纳米粒子吸附热力学的形状依赖性:理论与实验研究。

Shape dependence of thermodynamics of adsorption on nanoparticles: a theoretical and experimental study.

机构信息

Department of Applied Chemistry, Taiyuan University of Technology, Taiyuan 030024, P. R. China.

出版信息

Phys Chem Chem Phys. 2018 Dec 5;20(47):29959-29968. doi: 10.1039/c8cp04895a.

Abstract

Nanomaterials have excellent adsorption performance, which mainly depends on the adsorption thermodynamics that is related to the shape of the nanoparticles that make up the nanomaterial, but the effects of shape on the thermodynamics of adsorption are not fully clear. In this paper, theoretically, the general formulae of adsorption thermodynamic properties for nanoparticles with different shapes and different sizes were derived, and the influencing regularities and mechanisms on adsorption thermodynamic properties were discussed. Experimentally, the influences of the shape and size of nano-CeO2 on the thermodynamics of adsorption were studied in aqueous solution. The experiment results showed that the shape has significant influences on the thermodynamics of adsorption, and the smaller the particle size, the more significant the effects of shape on the thermodynamics. For the adsorption of nano-CeO2 with different shapes and the same equivalent particle size, compared with the sphere, the equilibrium constant of adsorption for the octahedron is larger, while the molar Gibbs free energy of adsorption , the molar adsorption enthalpy of adsorption and the molar adsorption entropy of adsorption are smaller. For the adsorption of nano-CeO2 with the same shape, with the decreasing particle size, increases, while , and decrease; and , , and are each linearly related to the reciprocal of particle size. The experimental results are consistent with the theoretical relations. The theories can quantitatively describe the adsorption behavior on nanoparticles, explain the regularities and mechanisms of influence of shape, and provide guidance for the research and application of nanoadsorption.

摘要

纳米材料具有优异的吸附性能,这主要取决于吸附热力学,而吸附热力学与构成纳米材料的纳米粒子的形状有关,但形状对吸附热力学的影响尚不完全清楚。本文从理论上推导了不同形状和不同粒径纳米粒子吸附热力学性质的一般公式,并讨论了其对吸附热力学性质的影响规律和机制。实验上,研究了纳米 CeO2 的形状和粒径对水溶液中吸附热力学的影响。实验结果表明,形状对吸附热力学有显著影响,粒径越小,形状对热力学的影响越显著。对于具有不同形状和相同等效粒径的纳米 CeO2 的吸附,与球体相比,八面体的吸附平衡常数更大,而吸附摩尔吉布斯自由能 ,吸附摩尔焓和吸附摩尔熵则较小。对于具有相同形状的纳米 CeO2 的吸附,随着粒径的减小而增大,而 ,则减小;且 , ,与粒径的倒数呈线性关系。实验结果与理论关系一致。该理论可以定量描述纳米粒子的吸附行为,解释形状影响的规律和机制,为纳米吸附的研究和应用提供指导。

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