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Studying graphene oxide photoreduction with dynamic transmission electron microscopy

Studying graphene oxide photoreduction with dynamic transmission electron microscopy
用动态透射电子显微镜研究氧化石墨烯光还原
批准号:
580462-2022
负责人:
Beyerlein, KennethRoyKR
金额:
$1.82万
依托单位国家:
加拿大
项目类别:
Alliance Grants
财政年份:
2022
资助国家:
加拿大
项目状态:
已结题
起止时间:
2022-01-01 至 2023-12-31

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中文摘要
翻译
该项目旨在形成INRS-EMT的Kenneth Beyerlein教授与法国斯特拉斯堡大学的Banhart教授之间的合作,以揭示使用光将氧化石墨烯转化为石墨烯。石墨烯是一种特殊的单原子层碳,已在包括能源和医药在内的许多行业中得到应用。对这种材料的需求不断增加,需要开发更好的方法来在工业规模上制造它。氧化石墨烯可以从石墨中大量生产,与石墨烯类似,但含有使其性能降低的氧化合物。高强度激光已被证明可以还原氧化石墨烯,去除这些不需要的氧化合物,但关于限制产品质量的转化机制仍然存在问题。这一建议将允许独特的测量,以跟踪实时使用新的动态透射电子显微镜仪器的还原过程。要求提供资金,以便在斯特拉斯堡仪器上进行测量,该仪器特别适合跟踪相关的化学变化。该项目的重点是影响加拿大制造业的一个重要问题,并打算启动一个国际科学家网络,开发尖端的时间分辨电子显微镜方法和仪器。
英文摘要
This project aims to form a collaboration between Prof. Kenneth Beyerlein of INRS-EMT with Prof. Banhart of University of Strasbourg, France, to uncover the transformation of graphene oxide into graphene using light. Graphene is a special single atomic layer of carbon that has found application in a lot of industries including energy and medicine. The increasing demand for this material requires the development of better ways to manufacture it on an industrial scale. Graphene oxide can be produced in large quantities from graphite and is similar to graphene, but contains oxygen compounds that degrade its properties. High-intensity laser light has been shown to reduce graphene oxide, removing these undesired oxygen compounds, however questions remain about the transformation mechanism that limits the quality of the product. This proposal will allow for unique measurements to track the reduction process in real-time using novel dynamic transmission electron microscope instruments. Funds are requested to allow for measurements to be made on the Strasbourg instrument, which is uniquely suited to follow the associated chemical changes. This project is focused on an important problem impacting Canadian manufacturing, and is intended to initiate an international network of scientists developing cutting-edge time-resolved electron microscopy methods and instrumentation.
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Studying dynamic control of quantum heterostructure interfaces with strain pulses
国内基金
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  • 项目类别:
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  • 负责人:
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  • 依托单位:
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  • 项目类别:
    面上项目
  • 资助金额:
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  • 批准年份:
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  • 负责人:
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