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探索五种卤代苯甲醛的挥发性、相变及溶解性特性

Exploring the Volatility, Phase Transitions, and Solubility Properties of Five Halogenated Benzaldehydes.

作者信息

Almeida Ana R R P, Pinheiro Bruno D A, León Gastón P, Postolnyi Bogdan, Araújo João P, Monte Manuel J S

机构信息

Research Centre in Chemistry (CIQUP), Institute of Molecular Sciences (IMS), Department of Chemistry and Biochemistry (DQB), Faculty of Sciences, University of Porto, Rua do Campo Alegre 687, 4169-007 Porto, Portugal.

Institute of Physics for Advanced Materials, Nanotechnology and Photonics (IFIMUP), Department of Physics and Astronomy (DFA), Faculty of Sciences, University of Porto, Rua do Campo Alegre 687, 4169-007 Porto, Portugal.

出版信息

Molecules. 2025 Mar 31;30(7):1551. doi: 10.3390/molecules30071551.

Abstract

Halogenated benzaldehydes possess unique chemical properties that render them valuable in pharmaceutical synthesis, pesticide formulation, and dye production. However, thorough thermodynamic data for these compounds remain scarce. This study aims to fill this knowledge gap by investigating key physical properties of several halogenated benzaldehydes, namely 4-chlorobenzaldehyde, 4-bromobenzaldehyde, 2,3-dichlorobenzaldehyde, 2,4-dichlorobenzaldehyde, and 2,6-dichlorobenzaldehyde. The physical properties determined in this study include volatility, phase transitions, and water solubility, all of which are crucial for predicting the environmental fate of these compounds. The vapor pressures of both crystalline and liquid phases were measured using a reliable static method, allowing for the determination of standard molar enthalpies, entropies, and Gibbs energies of sublimation and vaporization, as well as their triple points. The melting temperature and molar enthalpy, along with the isobaric molar heat capacity of the crystalline phase, were assessed using differential scanning calorimetry. Water solubility was evaluated at 25 °C through the saturation shake-flask method, complemented by ultra-violet visible spectroscopy. By combining sublimation and solubility data, additional properties such as Gibbs energies of hydration and Henry's law constants were derived. The experimental results were integrated into existing databases, enhancing the predictive models for properties including melting temperature, vapor pressure, solubility, Gibbs energy of hydration, and Henry's constant. These findings significantly improve the environmental modeling capabilities, providing valuable insights into the mobility and fate of halogenated benzaldehydes in various environmental contexts.

摘要

卤代苯甲醛具有独特的化学性质,使其在药物合成、农药制剂和染料生产中具有重要价值。然而,关于这些化合物的全面热力学数据仍然匮乏。本研究旨在通过研究几种卤代苯甲醛的关键物理性质来填补这一知识空白,这几种卤代苯甲醛分别为4-氯苯甲醛、4-溴苯甲醛、2,3-二氯苯甲醛、2,4-二氯苯甲醛和2,6-二氯苯甲醛。本研究测定的物理性质包括挥发性、相变和水溶性,所有这些性质对于预测这些化合物在环境中的归宿至关重要。使用可靠的静态方法测量了晶相和液相的蒸气压,从而能够确定升华和汽化的标准摩尔焓、熵以及吉布斯自由能,以及它们的三相点。使用差示扫描量热法评估了熔点和摩尔焓以及晶相的等压摩尔热容。通过饱和摇瓶法并辅以紫外可见光谱法在25℃下评估了水溶性。通过结合升华和溶解度数据,推导出了诸如水合吉布斯自由能和亨利定律常数等其他性质。实验结果被整合到现有数据库中,增强了包括熔点、蒸气压、溶解度、水合吉布斯自由能和亨利常数等性质的预测模型。这些发现显著提高了环境建模能力,为卤代苯甲醛在各种环境背景下的迁移性和归宿提供了有价值的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c9ea/11990670/afd7e34a7e40/molecules-30-01551-g001.jpg

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