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High Resolution Mass Spectrometers to Support Chemistry at Bath

High Resolution Mass Spectrometers to Support Chemistry at Bath
支持巴斯化学的高分辨率质谱仪
批准号:
EP/D075351/1
负责人:
Christopher Frost
金额:
$60.49万
依托单位:
依托单位国家:
英国
项目类别:
Research Grant
财政年份:
2006
资助国家:
英国
项目状态:
已结题
起止时间:
2006 至 --

项目摘要

项目成果

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中文摘要
翻译
化学家们制造新的化合物,并努力在分子水平上理解科学。为了做到这一点,他们在日常工作中需要广泛的分析设施。其中最重要的一项是能够快速、可靠和准确地分析任何合成的新物质的化学成分。实现这一点的一个关键方法是质谱学--一种非常准确地有效测量分子质量的技术。这与也通过质谱学测量的同位素模式相一致,使得能够准确地确定化合物的分子式并由此鉴定该化合物。因此,在现代化学研究中,质谱学是一种绝对重要的分析技术。该提案概述了支持巴斯大学化学系建立新的质谱学设施的理由。巴斯目前的仪器很旧(超过十年),非常不可靠,而且工作起来非常慢。此外,如果没有现代的,事实上现在被认为是常规的数据采集和分析软件,它不仅大大有助于新化合物的鉴定,而且还有助于数据的详细分析(例如通过获得小蛋白的碱基序列)。我们需要两台光谱仪。一种是以高通量模式运行,使用机器人自动取样器将样本注入仪器,以及可以(如果需要)自动分析数据并将结果通过电子邮件发送给化学家的软件。在此模式下工作的样本可以每2分钟运行一次-与当前情况(工作时1-2周周转)有很大不同。该仪器还配备了高效液相色谱仪(HPLC),可以分离混合物,然后分析每种成分。第二种仪器用于分析对空气、水分和高通量质谱仪中常用的溶剂(如甲醇)高度敏感的络合物。巴斯的许多化学家合成并使用这种络合物,要么研究它们的基本结构和成键,要么将它们用作有用的化学转化或有用材料(如半导体)的沉积的催化剂。由于它们的敏感性,此类络合物历来很难用质谱仪进行分析。鉴于质谱学在化合物鉴定中发挥的关键作用,这是一种需要解决的情况。这第二个光谱仪将通过将其与惰性大气手套箱接口的技术简单的解决方案来实现这种分析。我们相信这一解决方案在英国是独一无二的。这两台光谱仪都需要在大范围可能的化合物质量范围内以高精度和高分辨率运行;我们选择的仪器(混合式四极飞行时间质谱仪)能够实现这一点,使用强大和成熟的技术。在巴斯提供这样的现代化设施将促进在一个在物理规模和雄心上迅速扩大的部门进行广泛的新奇、冒险和尖端的研究。
英文摘要
Chemists make new compounds and also strive to understand science at the molecular level. In order to do this they require a wide range of analytcial facilities on a day-to-day basis. One of the most important of these is the ability to analyse with speed, reliability and accuracy the chemical composition of any new substance synthesised. One key method for doing this is mass spectrometry - a technique that effectively measures the mass, very accurately, of molecules. This, in concert with isotope patterns that also are measured by mass spectrometry, enables the molecular formula of a compound to be accurately determined and the compound thus identified. Mass spectrometry is thus an absolutely vital analytical technique in modern chemical research. This proposal outlines a case for support for a new mass spectrometric facility for the Department of Chemistry, University of Bath. The current instrument at Bath is old (over ten years) highly unreliable and, when working, very slow. Moreover if does not have modern, in fact now considered routine, software for data acquisition and analysis that aids considerably not only the identification of new compounds but also the detailed analysis of data (for example by obtaining the base sequences in small proteins). We request two spectrometers. One to operate in high-throughput mode, using a robotic autosampler to inject samples into the instrument, and software that can (if needed) automatically analyse the data and email the chemist the result. Working under this mode samples can be run every 2 minutes - a dramatic difference from the current situation (1-2 week turnaround when working). This instrument is also equipped with a high performance liquid chromatograph (HPLC) which allows mixtures to be separated and then each component analysed. The second instrument is to be used for the analysis of complexes that are highly sensitive to air, moisture and the solvents commonly used in high throughput mass spectrometers (e.g. methanol). Many chemists at Bath synthesise and use such complexes, either to study their fundamental structure and bonding, or to use them as catalysts for useful chemical transformations or deposition of useful materials (e.g. semiconductors). Such complexes have been historically difficult to analyse by mass spectrometry due their sensitivity. Given the key-stone role that mass spectrometry plays in compound identification this is a situation that needs to be addressed. This second spectrometer will allow such analysis by the technologically simple solution of interfacing it with an inert atmosphere glove box. We believe this solution to be unique in the UK. Both spectrometers are required to operate to high accuracy and resolution, over a wide range of possible compound masses; and our choice of instrument (hybrid quadrupole time of flight mass spectrometer) allows for this, using robust and established technology. The provision of such modern facilities at Bath will facilitate a wide range of novel, adventurous and cutting-edge research to be undertaken in a Department which is rapidly expanding both in physical size and ambition.
期刊论文(9)
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会议论文
DOI: 10.1002/anie.200907067
发表时间: 2010-03
期刊: Angewandte Chemie
影响因子: --
作者: [J. Hargrave;Joseph C. Allen;G. Kociok‐Köhn;G. Bish;C. Frost]
通讯作者: J. Hargrave;Joseph C. Allen;G. Kociok‐Köhn;G. Bish;C. Frost
Cross-disciplinary Research For Environmental Solution
  • 批准号:
    NE/X018474/1
  • 项目类别:
    Research Grant
  • 资助金额:
    $12.85万
  • 财政年份:
    2022
  • 负责人:
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  • 依托单位:
The Downside of Smelling for Danger: Fitness Costs of Plant Defense Priming via Plant-Plant Volatile Signaling
  • 批准号:
    2101059
  • 项目类别:
    Continuing Grant
  • 资助金额:
    $24.15万
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    2020
  • 负责人:
    Christopher Frost
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The Downside of Smelling for Danger: Fitness Costs of Plant Defense Priming via Plant-Plant Volatile Signaling
A Flow Process For Aminomethylations Using Catalysts Supported On Magnetic Nanoparticles
  • 批准号:
    EP/G02703X/1
  • 项目类别:
    Research Grant
  • 资助金额:
    $28.09万
  • 财政年份:
    2009
  • 负责人:
    Christopher Frost
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国内基金
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Exposing Verifiable Consequences of the Emergence of Mass
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    2021
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    Craig Darrian Roberts
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多船会遇局面下的MASS自主行为决策与控制策略研究
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    --
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    面上项目
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Shining light on the black hole mass distribution
  • 批准号:
    12073029
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  • 批准年份:
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    Roberto Soria
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