Touboul David, Kollmer Felix, Niehuis Ewald, Brunelle Alain, Laprévote Olivier
Institut de Chimie des Substances Naturelles, CNRS, Gif-sur-Yvette Cedex, France.
J Am Soc Mass Spectrom. 2005 Oct;16(10):1608-18. doi: 10.1016/j.jasms.2005.06.005.
A new liquid metal ion gun (LMIG) filled with bismuth has been fitted to a time-of-flight-secondary ion mass spectrometer (TOF-SIMS). This source provides beams of Bi(n)q+ clusters with n = 1-7 and q = 1 and 2. The appropriate clusters have much better intensities and efficiencies than the Au3+ gold clusters recently used in TOF-SIMS imaging, and allow better lateral and mass resolution. The different beams delivered by this ion source have been tested for biological imaging of rat brain sections. The results show a great improvement of the imaging capabilities in terms of accessible mass range and useful lateral resolution. Secondary ion yields Y, disappearance cross sections sigma, efficiencies E = Y/sigma , and useful lateral resolutions deltaL have been compared using the different bismuth clusters, directly onto the surface of rat brain sections and for several positive and negative secondary ions with m/z ranging from 23 up to more than 750. The efficiency and the imaging capabilities of the different primary ions are compared by taking into account the primary ion current for reasonable acquisition times. The two best primary ions are Bi3+ and Bi5(2+). The Bi3+ ion beam has a current at least five times larger than Au3+ and therefore is an excellent beam for large-area imaging. Bi5(2+) ions exhibit large secondary ions yields and a reasonable intensity making them suitable for small-area images with an excellent sensitivity and a possible useful lateral resolution <400 nm.
一台装有铋的新型液态金属离子枪(LMIG)已被安装到飞行时间二次离子质谱仪(TOF-SIMS)上。该离子源可提供n = 1 - 7、q = 1和2的Bi(n)q+团簇束流。与最近用于TOF-SIMS成像的Au3+金团簇相比,合适的团簇具有更好的强度和效率,并能提供更好的横向分辨率和质量分辨率。该离子源产生的不同束流已用于大鼠脑切片的生物成像测试。结果表明,在可及质量范围和有用横向分辨率方面,成像能力有了很大提高。使用不同的铋团簇,直接在大鼠脑切片表面,对m/z范围从23到750以上的几种正、负离子的二次离子产率Y、消失截面σ、效率E = Y/σ以及有用横向分辨率δL进行了比较。通过考虑合理采集时间下的一次离子电流,比较了不同一次离子的效率和成像能力。两种最佳的一次离子是Bi3+和Bi5(2+)。Bi3+离子束的电流至少比Au3+大五倍,因此是大面积成像的理想束流。Bi5(2+)离子具有较高的二次离子产率和合理的强度,使其适用于具有出色灵敏度且有用横向分辨率可能小于400 nm的小面积成像。