MRI: Acquistion of an X-ray Photoelectron Spectroscopy System for Surface Chemical Analysis
MRI: Acquistion of an X-ray Photoelectron Spectroscopy System for Surface Chemical Analysis
批准号:
0116260
负责人:
James Batteas
金额:
$12.52万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2001
资助国家:
美国
项目状态:
已结题
起止时间:
2001-08-01 至 2003-07-31
中文摘要
该奖项由纽约市立大学-斯塔顿岛分校的主要研究仪器计划授予,用于收购X射线光电子能谱(XPS)系统,以进行基本的表面化学分析,支持创新的表面和界面研究工作。支持的研究课题包括:纳米摩擦学;表面化学传感器的开发;表面结合光子器件;界面分子相互作用的研究,II-VI族宽带隙材料的生长和基本表面功能化。 XPS是一种高灵敏度的表面分析工具,可以对各种材料的表面化学成分和局部化学环境(如氧化态和某种程度上的分子连接性)进行详细评估。该技术的灵敏度提供了在表面上的化学浓度的信息,用于常规的吸附在表面上的材料的单层的分数。该仪器还将支持在斯塔顿岛学院和纽约市立大学内的大量教育活动。这包括在化学课程(由PI教授)的仪器方法的年度使用,在斯塔滕岛的NSF支持REU计划的聚合物和生物聚合物,研究生教育和培训在我们的NSF支持IGERT计划纳米结构材料和设备的学院本科研究活动,并作为我们新成立的博士1学期实验室轮换课程的一部分。纳米技术和材料化学。该仪器将有广泛的用途,并提高参与教师以及机构的整体研究和教育能力。这项由主要研究仪器计划授予纽约市立大学斯塔顿岛分校的奖项是为了获得X射线光电子能谱(XPS)系统,以进行基本的表面化学分析,支持创新的表面和界面研究工作。支持的研究课题包括:纳米摩擦学;表面化学传感器的开发;表面结合光子器件;界面分子相互作用的研究,II-VI族宽带隙材料的生长和基本表面功能化。 XPS是一种高灵敏度的表面分析工具,可以对各种材料的表面化学成分和局部化学环境(如氧化态和某种程度上的分子连接性)进行详细评估。该技术的灵敏度提供了在表面上的化学浓度的信息,用于常规的吸附在表面上的材料的单层的分数。该仪器还将支持在斯塔顿岛学院和纽约市立大学内的大量教育活动。这包括在化学课程中的仪器方法的年度使用(由PI教授,在斯塔滕岛的NSF支持REU计划的聚合物和生物聚合物,研究生教育和培训,在我们的NSF支持IGERT计划纳米结构材料和设备的学院的本科研究活动,并作为我们新成立的博士1学期实验室轮换课程的一部分。纳米技术和材料化学。该仪器将有广泛的用途,并提高参与教师以及机构的整体研究和教育能力。这项由纽约史泰登岛城市大学重大研究仪器计划授予的奖项是用于购买X射线光电子能谱(XPS)系统,以进行基本的表面化学分析,支持创新的表面和界面研究工作。该仪器将有广泛的用途,并提高参与教师以及机构的整体研究和教育能力。支持的研究课题包括:纳米摩擦学;表面化学传感器的开发;表面结合光子器件;界面分子相互作用的研究,II-VI族宽带隙材料的生长和基本表面功能化。XPS是一种高灵敏度的表面分析工具,可以对各种材料的表面化学成分和局部化学环境(如氧化态和某种程度上的分子连接性)进行详细评估。该仪器还将支持在斯塔顿岛学院和纽约市立大学内的大量教育活动。这包括每年在化学课程中使用仪器方法(由PI教授),史泰登岛学院NSF支持的聚合物和生物聚合物REU计划中的本科研究活动,我们NSF支持的IGERT纳米结构材料和器件计划中的研究生教育和培训,以及作为我们新成立的博士学位课程的1学期实验室轮换课程的一部分。纳米技术和材料化学。
英文摘要
This award from the Major Research Instrumentation Program to City University of New York-Staten Island is for the acquisition of an X-ray Photoelectron Spectroscopy (XPS) system to carry out basic surface chemical analysis in support of innovative surface and interfacial research efforts. The research topics supported include: nanotribology; development of surface chemical sensors; surface bound photonic devices; studies of molecular interactions at interfaces, growth of II-VI wide bandgap materials and basic surface functionaliztion. XPS is a highly sensitive surface analytical tool that allows for the details of surface chemical composition and local chemical environment (such as oxidation state and to some extent molecular connectivity) to be evaluated for a variety of materials. The sensitivity of this technique provides information on chemical concentrations at the surface for routinely of fraction of monolayers of a material adsorbed on a surface. This instrumentation will also support a large number of educational activities both at The College of Staten Island and within CUNY. This includes annual use in an Instrumental Methods in Chemistry Course (taught by the PI), undergraduate research activities in The College of Staten Island's NSF supported REU program on Polymers and Biopolymers, graduate education and training in our NSF supported IGERT program on Nanostructural Materials and Devices, and as part of a 1 semester laboratory rotation course in our newly formed Ph.D. program in Nanotechnology and Materials Chemistry. The instrumentation will have wide usage and improve the overall research and educational capabilities of the participating faculty as well as the institution.This award from the Major Research Instrumentation Program to City University of New York-Staten Island is for the acquisition of an X-ray Photoelectron Spectroscopy (XPS) system to carry out basic surface chemical analysis in support of innovative surface and interfacial research efforts. The research topics supported include: nanotribology; development of surface chemical sensors; surface bound photonic devices; studies of molecular interactions at interfaces, growth of II-VI wide bandgap materials and basic surface functionaliztion. XPS is a highly sensitive surface analytical tool that allows for the details of surface chemical composition and local chemical environment (such as oxidation state and to some extent molecular connectivity) to be evaluated for a variety of materials. The sensitivity of this technique provides information on chemical concentrations at the surface for routinely of fraction of monolayers of a material adsorbed on a surface. This instrumentation will also support a large number of educational activities both at The College of Staten Island and within CUNY. This includes annual use in an Instrumental Methods in Chemistry Course (taught by the PI, undergraduate research activities in The College of Staten Island's NSF supported REU program on Polymers and Biopolymers, graduate education and training in our NSF supported IGERT program on Nanostructural Materials and Devices, and as part of a 1 semester laboratory rotation course in our newly formed Ph.D. program in Nanotechnology and Materials Chemistry. The instrumentation will have wide usage and improve the overall research and educational capabilities of the participating faculty as well as the institution.This award from the Major Research Instrumentation Program to City University of New York Staten-Island is for the acquisition of an X-ray Photoelectron Spectroscopy (XPS) system to carry out basic surface chemical analysis in support of innovative surface and interfacial research efforts. The instrumentation will have wide usage and improve the overall research and educational capabilities of the participating faculty as well as the institution. The research topics supported include: nanotribology; development of surface chemical sensors; surface bound photonic devices; studies of molecular interactions at interfaces, growth of II-VI wide bandgap materials and basic surface functionaliztion. XPS is a highly sensitive surface analytical tool that allows for the details of surface chemical composition and local chemical environment (such as oxidation state and to some extent molecular connectivity) to be evaluated for a variety of materials. This instrumentation will also support a large number of educational activities both at The College of Staten Island and within CUNY. This includes annual use in an Instrumental Methods in Chemistry Course (taught by the PI), undergraduate research activities in The College of Staten Island' s NSF supported REU program on Polymers and Biopolymers, graduate education and training in our NSF supported IGERT program on Nanostructural Materials and Devices, and as part of a 1 semester laboratory rotation course in our newly formed Ph.D. program in Nanotechnology and Materials Chemistry.
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会议论文
NSF Center for the Mechanical Control of Chemistry
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批准号:2303044
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项目类别:Cooperative Agreement
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资助金额:$2000.0万
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财政年份:2023
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负责人:James Batteas
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依托单位:
CCI Phase 1: NSF Center for the Mechanical Control of Chemistry
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财政年份:2020
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批准号:1951467
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Collaborative Research: Studies of Charge Transport in Designed Nanoscale Molecular Assemblies
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财政年份:2020
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Collaborative Research: Understanding and Tuning the Molecular Arrangement and Charge Storage Properties of Textured Graphene-Ionic Liquid Interface
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批准号:1904887
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资助金额:$21.72万
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财政年份:2019
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负责人:James Batteas
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依托单位:
Collaborative Research: Directing Charge Transport in Hierarchical Molecular Assemblies
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批准号:1611119
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项目类别:Standard Grant
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资助金额:$34.5万
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财政年份:2016
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负责人:James Batteas
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依托单位:
Studies on the Use of Atomically Thin Films for Controlling Friction and Adhesion at Interfaces
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批准号:1436192
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项目类别:Standard Grant
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资助金额:$33.67万
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财政年份:2014
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负责人:James Batteas
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Collaborative Research: Charge Transport in Confined Molecular Assemblies
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批准号:1213802
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资助金额:$33.0万
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财政年份:2012
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负责人:James Batteas
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依托单位:
Studies of Friction and Adhesion in Nanoscale Asperity-Asperity Contacts
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批准号:1131361
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项目类别:Standard Grant
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资助金额:$29.77万
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财政年份:2011
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负责人:James Batteas
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依托单位:
Collaborative Research: Molecular Conduction in Confined Molecular Assemblies
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批准号:0848786
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项目类别:Standard Grant
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资助金额:$35.05万
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财政年份:2009
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负责人:James Batteas
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依托单位:
Probing the Role of Surface Defects and Disorder on the Tribology of Nanoscopic Contacts
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批准号:0825977
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资助金额:$19.36万
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负责人:James Batteas
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依托单位:
海外基金