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Effects of Gas Adsorption in Nano-asperity Tribological Contacts

Effects of Gas Adsorption in Nano-asperity Tribological Contacts
纳米粗糙体摩擦接触中气体吸附的影响
批准号:
0625493
负责人:
Seong Kim
金额:
$0.0万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2006
资助国家:
美国
项目状态:
已结题
起止时间:
2006-10-01 至 2009-09-30

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中文摘要
翻译
CMS-0625493:气体在纳米粗糙摩擦学接触中的吸附效应Seong H.Kim,宾夕法尼亚州立大学化学工程系固体表面吸附层的分子有序性和厚度是表面科学和工程中的核心问题。在先前的国家自然科学基金项目(CMS-0408369)中,人们发现清洁的二氧化硅表面吸附的水分子的结构有序性对纳米粗糙接触的摩擦学性能起着关键的作用。研究还表明,乙醇的平衡吸附过程可以用来连续供应分子,形成少量埃的厚醇薄膜,对纳米粗糙的二氧化硅接触具有润滑作用。本研究的目的是:(A)了解纳米摩擦学中气体吸附效应的基本原理;(B)开发应用于微电子机械系统(MEMS)的气相润滑工艺。虽然本研究的重点是固-气界面的摩擦学性质,但从这项研究中获得的基础知识将对纳米技术、生物材料、催化、环境科学等领域产生深远的影响,在这些领域,界面现象主导着系统的性能。这项研究涵盖了从基础物理化学和热力学等科学基础到MEMS的工程应用;这将为参与该项目的学生提供多学科培训。
英文摘要
CMS-0625493: Effects of Gas Adsorption in Nano-asperity Tribological ContactsSeong H. KimDepartment of Chemical Engineering, The Pennsylvania State UniversityThe molecular ordering and thickness of the adsorbed layer on solid is the core problem in surface science and engineering. In the previous NSF project (CMS-0408369), it is found that the structural ordering of the adsorbed water molecules on clean silicon oxide surfaces play key roles in tribological properties of the nano-asperity contact. It is also demonstrated that the equilibrium adsorption process of alcohol can be utilized for continuous supply of molecules to form a few Angstrom thick alcohol film which shows lubricating effects for nano-asperity silicon oxide contacts. The objectives of the proposed research are to (a) understand fundamentals of the gas adsorption effects in nanotribology and (b) develop the gas-phase lubrication process for applications to microelectromechanical systems (MEMS). Although the main focus of the proposed research is the tribological properties of the solid-gas interfaces, the fundamental knowledge attained from this research will have profound impacts on nanotechnology, biomaterials, catalysis, environmental science, etc. where interfacial phenomena dominate the system performances. This research covers from scientific fundamentals such as basic physical chemistry and thermodynamics to the engineering applications to MEMS; this will provide multi-disciplinary trainings to students involved in this project.
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会议论文
GOALI: Understanding Tribological Properties of Thermally-Synthesized Carbon
Understanding Mesoscale Structures of Nanocrystalline Domains in Silk using Sum Frequency Generation Vibrational Spectroscopy
2022 Gordon Research Conference on Tribology: Understanding Sliding Interfaces to Master Tribological Systems Across Length Scales; Lewiston, Maine; 25 June to 1 July 2022
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