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基于原子力显微镜技术的微纳流体界面力学性质表征与调控 | |
Alternative Title | Characterization and regulation of mechanical properties of fluid interfaces at micro- and nanoscales based on atomic force microscopy |
聂鹏程![]() | |
Thesis Advisor | 关东石 |
2024-06 | |
Degree Grantor | 中国科学院大学 |
Place of Conferral | 北京 |
Subtype | 博士 |
Degree Discipline | 流体力学 |
Keyword | 微纳流体 原子力显微镜 接触角迟滞 界面作用力 液-液界面张力 |
Abstract | 随着新型储能技术、生物医学工程等前沿交叉领域的迅速发展,对微纳米尺 首先,针对离子液体微纳尺度润湿动力学的表征与调控问题,本文发展了导 最后,针对极低界面张力的力学表征与生物相分离液滴力学性质的表征与 |
Other Abstract | With the rapid development of new energy storage technologies, biomedical engineering, and other cutting-edge interdisciplinary fields, there is a new need for the characterization and regulation of mechanical properties of micro- and nanoscale fluid interfaces. Compared with the macroscopic flow, the surface force effect at the micro and nanoscale is prominent and involves the coupling of multi-physical field, which To address these challenges, we have conducted research on three key scientific problems: characterization methods, mechanical properties and regulatory mechanisms. Using the atomic force microscope, we have developed the conductive long needle cantilever probe technique to achieve the characterisation of the dynamic behaviour of contact Firstly, for characterizing and regulating the wetting dynamics of ionic liquid at the micro- and nanoscale, we develop a conductive long-needle AFM technique with the dual advantages of precise manipulation of fluid interfaces and sub-nano scale mechanical resolution. We discover and elucidate a significant shift of the contact angle hysteresis Secondly, to characterize the multi-scale mechanics of ionic liquid-solid interface, we adopt AFM technology with colloidal probe to achieve the interfacial mechanics of ionic liquids in different ranges of confined environment at the micro- and nanoscales. Through the measurement of long-distance hydordynamic force, we quantitatively measure the viscosity of ionic liquids. We further measure electrostatic repulsion force in The experimental tools developed in the above works provide feasible tools for studying the mechanical behaviour of fluid interfaces at the micro- and nanoscale. The above works provide reliable data for testing various theoretical models and numerical simulations, and provide references for investigating the physical nature of complex interfical phenomena. |
Language | 中文 |
Document Type | 学位论文 |
Identifier | http://dspace.imech.ac.cn/handle/311007/95519 |
Collection | 非线性力学国家重点实验室 |
Recommended Citation GB/T 7714 | 聂鹏程. 基于原子力显微镜技术的微纳流体界面力学性质表征与调控[D]. 北京. 中国科学院大学,2024. |
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File Name/Size | DocType | Version | Access | License | ||
Thesis.pdf(17699KB) | 学位论文 | 开放获取 | CC BY-NC-SA | Application Full Text |
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