离子阱
制作
质谱法
分光计
四极
四极离子阱
材料科学
存水弯(水管)
四极杆质量分析仪
薄脆饼
离子
探测器
混合质谱仪
分析化学(期刊)
光电子学
纳米技术
串联质谱法
光学
化学
物理
原子物理学
选择性反应监测
医学
有机化学
替代医学
病理
色谱法
气象学
作者
Z. Ouyang,Lijuan Gao,Miriam Fico,William J. Chappell,Robert J. Noll,R. Graham Cooks
摘要
Quadrupole ion traps are reviewed, emphasizing recent developments, especially the investigation of new geometries, guided by multiple particle simulations such as the ITSIM program. These geometries include linear ion traps (LITs) and the simplified rectilinear ion trap (RIT). Various methods of fabrication are described, including the use of rapid prototyping apparatus (RPA), in which 3D objects are generated through point-by-point laser polymerization. Fabrication in silicon using multilayer semi-conductor fabrication techniques has been used to construct arrays of micro-traps. The performance of instruments containing individual traps as well as arrays of traps of various sizes and geometries is reviewed. Two types of array are differentiated. In the first type, trap arrays constitute fully multiplexed mass spectrometers in which multiple samples are examined using multiple sources, analyzers and detectors, to achieve high throughput analysis. In the second, an array of individual traps acts collectively as a composite trap to increase trapping capacity and performance for a single sample. Much progress has been made in building miniaturized mass spectrometers; a specific example is a 10 kg hand-held tandem mass spectrometer based on the RIT mass analyzer. The performance of this instrument in air and water analysis, using membrane sampling, is described.
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