Microcalorimetry Techniques for Studying Interactions at Solid–Liquid Interface: A Review

Surfaces Pub Date : 2024-04-23 DOI:10.3390/surfaces7020018
Heshu Hu, Jiazhong Wu, Minghui Zhang
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Abstract

Solid–liquid interfacial phenomena play an essential role in our everyday lives and are often regarded as the outcome of interactions at the solid–liquid interface. However, the intricately intrinsic mechanism underlying interfacial interactions renders in situ simulations and direct measurements challenging. As an effective analytic method for studying solid–liquid interfacial interactions, microcalorimetry can provide the most basic thermodynamic information (including changes in enthalpy, entropy, and Gibbs free energy during solid–liquid binding/separation processes), which is extremely crucial for understanding interaction directionality and limitation. This review is dedicated to highlighting the pivotal role of microcalorimetry in studying solid–liquid immersion and adsorption processes. Specifically, we provide an overview of the commonly employed microcalorimetric methods, including differential scanning calorimetry (DSC), isothermal titration calorimetry (ITC), and immersion microcalorimetry (IM), and delve into the influence factors of enthalpy change, and finally discuss the specific applications of microcalorimetry in studying various solid–liquid binding processes. There remains a vast expanse of thermodynamic information regarding solid–liquid interactions that await exploration via calorimetry.
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研究固液界面相互作用的微量热技术:综述
固液界面现象在我们的日常生活中起着至关重要的作用,通常被认为是固液界面相互作用的结果。然而,界面相互作用的内在机制错综复杂,使得现场模拟和直接测量具有挑战性。作为研究固液界面相互作用的一种有效分析方法,微量热仪可以提供最基本的热力学信息(包括固液结合/分离过程中的焓、熵和吉布斯自由能的变化),这对于理解相互作用的方向性和局限性极为重要。本综述旨在强调微量热仪在研究固液浸入和吸附过程中的关键作用。具体而言,我们概述了常用的微量热法,包括差示扫描量热法(DSC)、等温滴定量热法(ITC)和浸入式微量热法(IM),并深入探讨了焓变的影响因素,最后讨论了微量热法在研究各种固液结合过程中的具体应用。有关固液相互作用的大量热力学信息仍有待通过量热仪进行探索。
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