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原位气/液或液/液界面分子的动态行为表征技术进展

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气/液和液/液界面在生产生活中无处不在,一直以来都是动态表界面研究领域的热点。为了更深入理解表界面分子结构、分子运动行为模式以及界面动态变化机制,发展原位界面分子的动态行为表征技术将有助于实现动态表界面的实际应用。本文综述了原位气/液和液/液界面分子的动态行为表征技术所取得的一些研究成果。首先介绍了动态表界面分子的结构和动态行为模式特性;然后重点介绍了宏观和分子层面的动态表界面表征技术的进展,包括新型的表征技术;最后,综合分析了当前领域中存在的问题和发展方向,希望为未来表征技术的开发与应用奠定基础。
In situ characterization of dynamic molecular behaviours at gas/liquid or liquid/liquid interfaces
Gas/liquid and liquid/liquid interfaces,with their unique dynamic molecular behaviours such as high molecular reactivity,specific molecular enrichment,wide range of molecular motions,and distinctive molecular trajectories,have attracted significant research interest.Owing to the inherent fluidity and deformability of liquids,these interfaces exhibit complex dynamic interfacial properties related to wetting,emulsification,phase separation,phase fusion,and environmental versatility,which play pivotal roles in various fields including materials science,chemical engineering,bioengineering,and environmental science.In situ characterization techniques for gas-liquid and liquid-liquid interfaces offer comprehensive insights into the dynamic molecular properties occurring at the heterogeneous interface between the two phases.The gas/liquid and liquid/liquid interface layers have a dynamic region with thicknesses ranging from angstroms to nanometers,separating the homogeneous gas phase from the liquid phase or one liquid phase from another.Their dynamically changing structures are heterogeneous and distinct from the fundamental chemical and physical properties of the two phases.Weak signal intensities often result in low signal-to-noise ratios.The states of the two bulk phases(e.g.,impurities and concentration distribution of specific molecules)and the environmental conditions at the interface(e.g.,temperature and pressure)can affect the interfacial molecular behaviours,making it challenging to distinguish the location and interface within a véry short time.Over the past decade,characterization technologies for gas/liquid and liquid/liquid interfaces have undergone continuous upgrades and iterations.Emerging characterization methods,such as high-resolution imaging,high-speed cameras,interface-functionalized molecular luminescence tracing,imaging with various luminescence light sources,and the construction of multiscale interface models,have been utilized to obtain the interfacial properties of molecular aggregation at the macroscopic level.Spectroscopic characterization strategies,including linear and nonlinear spectroscopy combined with molecular dynamics simulations,were employed to understand the interactions of interface molecules at the molecular level.The integration of multiscale experimental results with theory holds promise for addressing issues such as material transport,phase stability,transformation,and interfacial chemical reactivity at the gas/liquid and liquid/liquid interfaces.In the development of characterization mechanisms,emerging technologies such as field-induced droplet ionization mass spectrometry and liquid gating technology have systematically demonstrated their application advantages in the multiscale characterization of dynamic gas/liquid and liquid/liquid interfaces.The practicality of characterization techniques for dynamic molecular behaviour at gas/liquid or liquid/liquid interfaces is heavily dependent on the advancement of interfacial analysis tools.This article provides an overview of some research achievements in the in situ characterization of the dynamic molecular behaviour at gas/liquid and liquid/liquid interfaces.First,we introduce the properties of the molecular structures and dynamic behaviour patterns.Subsequently,the focus is on progress in macroscopic-and molecular-level characterization techniques as well as innovative methods.Macroscopic-level characterization techniques,including surface/interface mechanical characterization methods and imaging-assisted analysis methods,and molecular-level characterization techniques,including spectroscopic analysis and computational simulation-assisted analysis methods,have enhanced our understanding of the dynamic molecular structures at the surface/interface and behavioural patterns across multiple dimensions.Macroscopic-level characterization techniques are relatively simple;however,they can provide qualitative and quantitative information on the macroscopic aggregation states of interfacial molecules.Molecular-level characterization techniques are more complex but can reveal crucial processes at the interface,deepening our microscopic insight into the interface behaviour.Finally,a comprehensive analysis of the current challenges and future directions in the field is provided,laying the foundation for the future development and application of characterization techniques.

gas/liquid interfaceliquid/liquid interfacedynamic molecular behaviourin situ characterization

樊漪、陈思桐、侯旭

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厦门大学化学化工学院,厦门 361005

厦门大学固体表面物理化学国家重点实验室,厦门 361005

厦门大学物理科学与技术学院,厦门 361005

气/液界面 液/液界面 界面分子动态行为 原位表征

国家自然科学基金国家自然科学基金国家自然科学基金福建省自然科学基金高等学校学科创新引智计划(111计划)高等学校学科创新引智计划(111计划)嘉庚创新实验室科技项目新基石科学基金中国博士后科学基金

52025132T2241022219752092022J02059B17027B16029RD20220706012023M732931

2024

科学通报
中国科学院国家自然科学基金委员会

科学通报

CSTPCD北大核心
影响因子:1.269
ISSN:0023-074X
年,卷(期):2024.69(7)
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