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金属前驱体在超临界CO₂中的溶解度:测量与关联

Solubility of Metal Precursors in Supercritical CO: Measurements and Correlations.

作者信息

Crone Marlene, Türk Michael

机构信息

Institute for Technical Thermodynamics, Karlsruhe Institute of Technology (KIT), Engler-Bunte-Ring 21, 76131 Karlsruhe, Germany.

出版信息

Molecules. 2025 Apr 8;30(8):1660. doi: 10.3390/molecules30081660.

Abstract

Knowledge of the solubility of metal precursors in supercritical (sc) CO is a key factor for determining the best operation conditions for the synthesis of supported metallic nanoparticles. In this paper, new experimental solubility data of Cu(acac), Pd(acac), and Pt(acac) in scCO for temperatures from 313 to 353 K and pressures from 10 to 40 MPa are presented and compared with the literature data and correlated with semi-empirical density-based models (Chrastil, extended Kumar and Johnston, extended Bartle, and the original and modified Méndez-Santiago-Teja). In addition, literature data for the solubility of Cu(tmhd), Pd(tmhd), and Pt(cod)me in scCO were also correlated with the above-mentioned models. The best result, i.e., the best agreement between the experimental and calculated solubility datasets, was observed for the Chrastil model. Applying the Chrastil and extended Bartle models, the dissolution, sublimation, and solvation enthalpies were estimated. Furthermore, these correlation results were compared with the results from Ushiki et al., who correlated the solubilities of metal acetylacetonates in scCO from the literature using the PC-SAFT equation of state. This comparison showed that the original Méndez-Santiago-Teja model enabled a better description of the experimental data by a factor of three.

摘要

了解金属前驱体在超临界(sc)CO₂ 中的溶解度是确定负载型金属纳米颗粒合成最佳操作条件的关键因素。本文给出了 Cu(acac)₂、Pd(acac)₂ 和 Pt(acac)₂ 在 scCO₂ 中于 313 至 353 K 温度和 10 至 40 MPa 压力下的新实验溶解度数据,并与文献数据进行比较,且与基于密度的半经验模型(Chrastil 模型、扩展的 Kumar 和 Johnston 模型、扩展的 Bartle 模型以及原始和修正的 Méndez-Santiago-Teja 模型)相关联。此外,Cu(tmhd)₂、Pd(tmhd)₂ 和 Pt(cod)Me 在 scCO₂ 中的溶解度文献数据也与上述模型相关联。Chrastil 模型的实验和计算溶解度数据集之间的一致性最佳。应用 Chrastil 模型和扩展的 Bartle 模型,估算了溶解、升华和溶剂化焓。此外,将这些关联结果与 Ushiki 等人的结果进行了比较,他们使用 PC-SAFT 状态方程对文献中金属乙酰丙酮盐在 scCO₂ 中的溶解度进行了关联。该比较表明,原始的 Méndez-Santiago-Teja 模型对实验数据的描述效果要好三倍。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3a97/12029637/e68ca4cebe16/molecules-30-01660-g0A1a.jpg

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