Collaborative Research: IDBR: Instrumented Diamond Window for Synchrotron Beamlines

合作研究:IDBR:用于同步加速器光束线的仪表化金刚石窗口

基本信息

  • 批准号:
    1254587
  • 负责人:
  • 金额:
    $ 4.3万
  • 依托单位:
  • 依托单位国家:
    美国
  • 项目类别:
    Continuing Grant
  • 财政年份:
    2013
  • 资助国家:
    美国
  • 起止时间:
    2013-09-01 至 2015-08-31
  • 项目状态:
    已结题

项目摘要

Abstract: Understanding the structure and dynamics of biological molecules and their interactions has proven to be critical in understanding, and even influencing, their functions. National synchrotron facilities provide a powerful array of tools for such structural biology studies, including a variety of x-ray techniques such as macromolecular x-ray crystallography, small-angle x-ray solution scattering, x-ray microscopy, x-ray absorption spectroscopy, x-ray fluorescence and x-ray footprinting. Many of these technologies, as they are developed to take advantage of next-generation synchrotron sources, are trending toward use of high flux beams and/or beams which require enhanced stability and precise understanding of beam position and intensity. An award is made to an integrated collaborative team from Case Western Reserve University, Stony Brook University and Brookhaven National Laboratory to develop instrumented diamond-based vacuum windows capable of simultaneously measuring the volumetric flux, position and morphology of a high flux x-ray beam to address the needs of these upcoming facilities. Because the instrument is integrated into a vacuum window, these devices are expected to offer a robust replacement option for the fragile, toxic beryllium windows nearly ubiquitous in current x-ray beamlines, while also providing beam monitoring capabilities. This project will directly enhance the research infrastructure at current and next-generation bioscience beamlines, with capabilities applicable across many scientific disciplines. Our national synchrotron user facilities are critical resources both for research and education, serving many thousands of users from nearly every scientific discipline every year, thus the potential user community for these devices is quite profound. These facilities also serve as training grounds at all levels of education, with programs for community outreach, K-12 programs, undergraduate internships, graduate dissertation research, postdoctoral training, and workshops to introduce established scientists to new research tools. In addition to active participation in these programs, this project directly supports the training of a graduate student who will learn a broad range of experimental techniques, taking advantage of the diverse expertise of the collaborative group. Recruitment of undergraduate students from the REU program is also expected to enhance the program. The multi-institution collaboration established to develop the instrument is comprised of researchers from the fields of biophysics, accelerator physics, and materials science, and the project includes academic, government and industrial participation. This diverse set of backgrounds will provide a breadth of experience for student training through the project. The instrument design and software developed during the project will be disseminated through publication, participation in conferences and workshops as well as seminars specifically directed toward educating the synchrotron community. Upon successful completion of this project, it is expected that funding will be pursued to move these devices into a broadly applicable format appropriate for commercial production.
摘要:了解生物分子的结构和动力学及其相互作用已被证明是理解甚至影响其功能的关键。国家同步加速器设施为这种结构生物学研究提供了一系列强大的工具,包括各种X射线技术,如大分子X射线晶体学、小角度X射线溶液散射、X射线显微镜、X射线吸收光谱、X射线荧光和X射线足迹法。这些技术中的许多技术,由于它们被开发以利用下一代同步加速器源,因此趋向于使用高通量束和/或需要增强的稳定性和对束位置和强度的精确理解的束。一个奖项是由凯斯西储大学,斯托尼布鲁克大学和布鲁克海文国家实验室的综合合作团队,以开发仪器化的金刚石真空窗口,能够同时测量体积通量,位置和形态的高通量X射线束,以满足这些即将到来的设施的需求。由于该仪器集成到真空窗口中,因此这些设备有望为当前X射线光束线中几乎无处不在的脆弱、有毒铍窗口提供强大的替代选择,同时还提供光束监测功能。该项目将直接增强当前和下一代生物科学光束线的研究基础设施,具有适用于许多科学学科的能力。我们的国家同步加速器用户设施是研究和教育的关键资源,每年为来自几乎每个科学学科的数千名用户提供服务,因此这些设备的潜在用户社区非常深刻。这些设施还作为各级教育的培训场所,包括社区外展计划,K-12计划,本科生实习,研究生论文研究,博士后培训和研讨会,以向已有的科学家介绍新的研究工具。除了积极参与这些计划,该项目还直接支持研究生的培训,他们将学习广泛的实验技术,利用合作小组的各种专业知识。从REU计划本科生的招聘也有望加强该计划。为开发该仪器而建立的多机构合作由来自生物物理学,加速器物理学和材料科学领域的研究人员组成,该项目包括学术,政府和工业参与。这套不同的背景将通过项目为学生培训提供广泛的经验。项目期间开发的仪器设计和软件将通过出版物、参加会议和讲习班以及专门针对同步加速器社区教育的研讨会进行传播。在成功完成该项目后,预计将寻求资金,将这些设备转变为适合商业生产的广泛适用的形式。

项目成果

期刊论文数量(0)
专著数量(0)
科研奖励数量(0)
会议论文数量(0)
专利数量(0)

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John Smedley其他文献

Pulsed laser deposition assisted epitaxial growth of cesium telluride photocathodes for high brightness electron sources
  • DOI:
    10.1038/s41598-025-87602-7
  • 发表时间:
    2025-01-27
  • 期刊:
  • 影响因子:
    3.900
  • 作者:
    Kali Prasanna Mondal;Mengjia Gaowei;Elena Echeverria;Kenneth Evans-Lutterodt;Jean Jordan-Sweet;Thomas Juffmann;Siddharth Karkare;Jared Maxson;S. J. van der Molen;Chad Pennington;Pallavi Saha;John Smedley;W. G. Stam;Rudolf M. Tromp
  • 通讯作者:
    Rudolf M. Tromp
Diamond sensors and polycapillary lenses for X-ray absorption spectroscopy.
用于 X 射线吸收光谱的金刚石传感器和多毛细管透镜。
  • DOI:
  • 发表时间:
    2013
  • 期刊:
  • 影响因子:
    1.6
  • 作者:
    B. Ravel;Klaus Attenkofer;J. Bohon;Erik Muller;John Smedley
  • 通讯作者:
    John Smedley

John Smedley的其他文献

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{{ truncateString('John Smedley', 18)}}的其他基金

Microcomputer Based Measurement and Simulation for Introductory Acoustics
基于微计算机的声学入门测量和仿真
  • 批准号:
    9552206
  • 财政年份:
    1995
  • 资助金额:
    $ 4.3万
  • 项目类别:
    Standard Grant
RUI: Energy Transfer in Collisions of Highly-Excited Atoms
RUI:高激发原子碰撞中的能量转移
  • 批准号:
    9208013
  • 财政年份:
    1992
  • 资助金额:
    $ 4.3万
  • 项目类别:
    Continuing Grant
A Laboratory for Introductory Musical Acoustics
音乐声学入门实验室
  • 批准号:
    9251188
  • 财政年份:
    1992
  • 资助金额:
    $ 4.3万
  • 项目类别:
    Standard Grant
Microcomputer-based Undergraduate Experiments in Laser Spectroscopy and Atomic Collision Phenomena
基于微机的本科激光光谱学与原子碰撞现象实验
  • 批准号:
    8851997
  • 财政年份:
    1988
  • 资助金额:
    $ 4.3万
  • 项目类别:
    Standard Grant

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  • 项目类别:
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合作研究:IDBR A 型:QSTORM-AO - 具有光控量子点的波前整形光片显微镜,用于厚组织中的超分辨率成像
  • 批准号:
    1555541
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合作研究:IDBR A 型:带有光控量子点的 QSTORM-AO-波前整形光片显微镜,用于厚组织中的超分辨率成像
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Collaborative Research: IDBR: TYPE A: Development of Squishy Robot Hands for a Delicate, Effective and Non-Intrusive Approach to Studying Deep Coral Reefs
合作研究:IDBR:A 型:开发 Squishy 机器人手,以精致、有效且非侵入性的方式研究深部珊瑚礁
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