Spectrometer console for a 500 MHz FT-NMR spectrometer
Spectrometer console for a 500 MHz FT-NMR spectrometer
批准号:
510824417
负责人:
金额:
$0.0万
依托单位:
依托单位国家:
德国
项目类别:
Major Research Instrumentation
财政年份:
2023
资助国家:
德国
项目状态:
未结题
起止时间:
2022-12-31 至 --
中文摘要
核磁共振波谱学不仅在化学领域,而且已经成为一种有价值和非常有用的分析工具。要回答有关溶液中分子的结构和反应性的科学问题,这种方法是绝对必要的。作为本申请的主题的仪器可用于教师的所有工作组。然而,在教师内部,它主要由有机和无机化学的综合导向工作组使用。因此,这里讨论的科学主题和问题是多方面的。它们的范围从催化-利用生物催化剂或基于金属的催化活性系统的对映选择性-到肽构象和肽-蛋白质相互作用的分析,从植物来源提取的民族医学试剂的结构解析-通常仅在亚毫克规模上获得-到溶液中弱的分子内和分子间供体-受体相互作用的研究以及聚路易斯酸的复合物形成。几乎所有这些研究课题都需要具有合适光谱分辨率和灵敏度的NMR测量,这有时非常耗时,以阐明结构和反应途径。老鳄鱼是,现在仍然是教师的NMR光谱基础设施的重要组成部分。它覆盖了总测量时间的重要部分,并因其场强而提供合适的光谱分辨率和灵敏度。光谱仪电子系统的更新旨在确保再运行10 - 15年的能力,并提供实施电流脉冲序列的可能性。所要求的电子系统将保证所有用户在未来10 - 15年内有足够的测量时间对合成实验室大量生产的样品进行及时有效的NMR测量。
英文摘要
NMR spectroscopy has become a valuable and extremely useful analytical tool not only in the field of chemistry. To answer scientific questions about the structure and reactivity of molecules in solution, this method is absolutely essential. The instrument, which is the subject of the present application, is available to all work groups of the faculty. However, within the faculty it is mainly used by the synthetically oriented work groups of organic and inorganic chemistry. The scientific topics and issues addressed here are consequently multifaceted. They range from catalysis – enantioselective utilizing bio catalysts or metal-based catalytically active systems – to the analyses of peptide conformations and peptide-protein interactions, the structural elucidation of ethnomedical agents extracted from plant sources – obtained very often only on a submilligram scale – to the study of weak intra- and intermolecular donor-acceptor interactions in solution as well as complex formation of poly-Lewis acids. Almost all of these research topics require NMR measurements with suitable spectral resolution and sensitivity, which are sometimes very time consuming, to elucidate structures and reaction pathways. The oldinstrument was and still is an essential part of the NMR spectroscopic infrastructure of the faculty. It covers an essential part of the total measurement time and provides suitable spectral resolution and sensitivity due to its field strength. Renewal of the spectrometer electronicssystem is intended to ensure the operational capability for another 10 – 15 years, and also offer the possibility to implement current pulse sequences. The requested electronic-system is to guarantee that all users will have sufficient measurement time over the next 10 – 15 years to perform timely and efficient NMR measurements on their samples, which are produced in high numbers in the synthesis laboratories.
期刊论文(0)
专著(0)
科研奖励(0)
会议论文
海外基金