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An electrospray ionization source for integration with microfluidics

机译:与微流控集成的电喷雾电离源

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We have demonstrated a new electrospray ionization (ESI) device incorporating a tip made from a shaped thin film, bonded to a microfluidic channel, and interfaced to a time-of-flight mass spectrometer (TOFMS). A triangular-shaped thin polymer tip was formed by lithography and etching. A microfluidic channel, 20 mum wide and 10 mum deep, was embossed in a cyclo olefin substrate using a silicon master. The triangular tip was aligned with the channel and bonded between the channel plate and a flat plate to create a microfluidic channel with a wicking tip protruding from the end. This structure aided the formation of a stable Taylor cone at the apex of the tip, forming an electrospray ionization source. This source was tested by spraying several solutions for mass spectrometric analysis. Because the components are all made by lithographic approaches with high geometrical fidelity, an integrated array system with multiple channels can be formed with the same method and ease as a single channel. We tested a multichannel system in a multiplexed manner and showed reliable operation with no significant cross contamination between closely spaced channels. [References: 37]
机译:我们已经展示了一种新的电喷雾电离(ESI)设备,该设备包含由成形薄膜制成的尖端,该尖端与微流体通道结合,并与飞行时间质谱仪(TOFMS)连接。通过光刻和蚀刻形成三角形的薄聚合物尖端。使用硅母盘在环烯烃基材上压印宽20毫米,深10微米的微流体通道。三角形尖端与通道对齐,并粘结在通道板和平板之间,以创建微流体通道,芯吸尖端从末端突出。这种结构有助于在尖端的顶点处形成稳定的泰勒锥,从而形成电喷雾电离源。通过喷涂几种用于质谱分析的溶液来测试此源。由于所有组件都是通过具有高几何保真度的光刻方法制成的,因此可以采用与单个通道相同的方法并容易地形成具有多个通道的集成阵列系统。我们以一种多路复用的方式测试了一个多通道系统,显示出可靠的运行,并且在紧密间隔的通道之间没有明显的交叉污染。 [参考:37]

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