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MRI: Acquisition of an inverted optical microscope to enable interdisciplinary research that unites five departments within the Union College Nanoscience Program

MRI: Acquisition of an inverted optical microscope to enable interdisciplinary research that unites five departments within the Union College Nanoscience Program
MRI:购买倒置光学显微镜,以实现将联合学院纳米科学项目内的五个部门联合起来的跨学科研究
批准号:
1229142
负责人:
Samuel Amanuel
金额:
$30.83万
依托单位:
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2012
资助国家:
美国
项目状态:
已结题
起止时间:
2012-09-01 至 2016-08-31

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中文摘要
翻译
这项倒置光学显微镜奖将使联合学院五个不同部门的研究成为可能,包括生物学,化学,物理学以及电气和机械工程。这种新仪器与现有的原子力显微镜(AFM)集成,可以在受控的环境条件(温度和湿度)下同时收集荧光和形态数据。新的集成系统将用于:1)软材料的原位相变和力学性能研究(半结晶聚合物和聚合物纳米复合材料),以了解界面在相变和增强机制中的作用:2)探索畴异质界面对光电流的影响,以提高聚合物/CdSe/粘土太阳能薄膜的光电效率; 3)研究受控环境条件对用于传感应用的纳米材料中的传导的影响; 4)研究细胞膜上的人促卵泡激素受体与细胞内蛋白质之间的相互作用,以更好地理解不孕症中的受体功能障碍; 5)研究巧克力中蔗糖水解和脂肪起霜过程中的形态变化; 6)研究视觉标记物的渗透深度(量子点)用于绘画和建筑保护;并且,在本发明中,7)扩展了一套新的图形技术,用于集成光学/AFM图像的短距离和长距离模式识别。AFM系统将支持联合学院的长期承诺,将本科生的研究经验作为课程的一个组成部分,并通过积极的学习,包括仪器的实践经验,开发创新的,多学科的研究和教学机会。 拟议的仪器将授权教师的研究和课程,课程和研究实验室之间的桥梁功能。 增强学生的专业知识与关键材料表征技术将促进专业发展和开放的职业机会,在科学和技术。 联合学院致力于包括学生从传统上代表性不足的群体在研究和教育项目中使用拟议的工具和其他主要的研究仪器。拟议的仪器将是正在进行的动态外展计划的一个组成部分,该计划利用科学和技术的前沿,通过艺术,食品科学及其为高中学生和教师设计的“物理常数”研讨会等应用程序来吸引公众。
英文摘要
This award for an inverted optical microscope will enable research across five different departments at Union College including Biology, Chemistry, Physics, and Electrical and Mechanical Engineering. This new instrument, integrated with an existing atomic force microscope (AFM), offers simultaneous collection of fluorescence and morphological data under controlled environmental conditions (temperature and humidity). The new integrated system will be used to: 1) study in-situ phase transitions and mechanical properties of soft materials (semi-crystalline polymers and polymer nanocomposites) in order to understand the role of interface in phase transition and reinforcement mechanisms; 2) probe the influence of domain heterointerfaces on photocurrents to improve photoefficiences in polymer/CdSe/clay solar films; 3) investigate the influence of controlled environmental conditions on conduction in nanomaterials for sensing applications; 4) study interactions between the human follicle stimulating hormone receptor at the cell membrane with intracellular proteins to better understand receptor dysfunction in infertility; 5) investigate morphological changes during sucrose hydrolysis and fat bloom in chocolates; 6) study the depth of penetration of visual markers (quantum-dots) for painting and architectural conservation; and, 7) extend a suite of novel graphical techniques for short and long range pattern recognition in integrated optical/AFM images.The integrated optical/AFM system will support Union College's long-standing commitment to incorporate undergraduate research experience as an integral part of the curriculum and develop innovative, multidisciplinary research and teaching opportunities through active learning that includes hands-on experience in instrumentation. The proposed instrument will empower faculty research and programs that feature bridges between courses and research laboratories. Enhanced student expertise with key materials characterization techniques will promote professional development and open career opportunities in science and technology. Union College is committed to including students from traditionally underrepresented groups in research and educational projects using the proposed instrument and other major research instrumentation. The proposed instrument will be an integral part of the ongoing dynamic outreach programs that use frontiers of science and technology to engage the general public through applications including arts, food science, and their 'Physical Constants' workshop designed for high school students and teachers.
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MRI: Acquisition of a Powder X-Ray Diffractometer (PXRD) for Interdisciplinary Research and Research Training
  • 批准号:
    1828144
  • 项目类别:
    Standard Grant
  • 资助金额:
    $32.74万
  • 财政年份:
    2018
  • 负责人:
    Samuel Amanuel
  • 依托单位:
海外基金