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Fabrication and testing of a miniature cylindrical ion trap mass spectrometer constructed from low temperature co-fired ceramics

机译:由低温共烧陶瓷构成的微型圆柱离子阱质谱仪的制造和测试

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A novel technique for the fabrication of miniature cylindrical ion trap (CIT) mass spectrometers using a non-conductive substrate has been developed. This technique demonstrated the feasibility of batch fabricating accurate and low-cost CITs. A CIT ring electrode (r(0) = 1.375 mm) was fabricated using multiple layers of low temperature co-fired ceramics (LTCC) which were punched and then compressed in a ring-electrode die. Uniform compression was achieved, and cracking, avoided, by tailoring the thickness of the LTCC stack. The stack was then fired at 850 degrees C to convert the LTCC into a ceramic ring. Areas to be metallized were patterned photolithographically after the ring was subjected to electroless plating g Stainless steel endplates were affixed to the ring electrode to complete the CIT. The prototype CIT was tested in the mass selective instability mode without axial modulation and produced mass spectra with a typical peak width of 1.8 m/z. Simulations of operation were also performed in ITSIM 5.0 after SIMION 7.0 was used to calculate the contribution of hi-her order multipoles to the nominally quadrupole potential inside the CIT. (c) 2005 Elsevier B.V. All rights reserved.
机译:已经开发出一种使用非导电衬底制造微型圆柱离子阱(CIT)质谱仪的新技术。该技术证明了批量制造准确且低成本的CIT的可行性。使用多层低温共烧陶瓷(LTCC)制作CIT环形电极(r(0)= 1.375 mm),将其冲压并在环形电极模具中压缩。通过调整LTCC堆的厚度,可以实现均匀的压缩,并避免开裂。然后在850摄氏度下烧制该堆叠,以将LTCC转换为陶瓷环。在对环进行化学镀后,对要金属化的区域进行光刻构图。g将不锈钢端板固定在环电极上,以完成CIT。在没有轴向调制的质量选择不稳定性模式下测试了原型CIT,并产生了典型峰宽为1.8 m / z的质谱图。在使用SIMION 7.0计算高阶多极对CIT内部名义上的四极电势的贡献之后,还在ITSIM 5.0中执行了操作仿真。 (c)2005 Elsevier B.V.保留所有权利。

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