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High-Throughput Ionic Liquid Ion Sources Using Arrays of Microfabricated Electrospray Emitters With Integrated Extractor Grid and Carbon Nanotube Flow Control Structures

机译:高通量离子液体离子源,采用微细电喷雾发射器阵列,具有集成的萃取栅和碳纳米管流量控制结构

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摘要

We report the design, fabrication, and experimental characterization of dense, monolithic, and planar arrays of externally-fed electrospray emitters with an integrated extractor grid and carbon nanotube flow control structures for low-voltage and high-throughput electrospray of the ionic liquid EMI-BF4 in vacuum. Microfabricated arrays with as many as 1900 emitters in 1 cm (^{2}) were fabricated and tested. Per-emitter currents as high as 5 (mu ) A in both polarities were measured, with start-up bias voltages as low as 470 V and extractor grid transmission as high as 80%. Maximum array emission currents of 1.35 mA (1.35 mA/cm (^{2}) ) were measured using arrays of 1900 emitters in 1 cm (^{2}) . A conformal carbon nanotube forest grown on the surface of the emitters acts as a wicking structure that transports liquid to the emitter tips, providing hydraulic impedance to regulate and uniformize the emission across the array. Mass spectrometry of the electrospray beam confirms that emission in both polarities is composed of solvated ions, and etching of the silicon collector electrode is observed. Collector imprints and per-emitter current–voltage characteristics for different emitter array sizes spanning three orders of magnitude show excellent emission uniformity across the array. Performance estimates of the devices as nanosatellite thrusters are provided. [2014-0060]
机译:我们报告了外部馈电电喷雾发射器的致密,整体式和平面阵列的设计,制造和实验特性,这些电喷雾发射器具有集成的抽气格栅和碳纳米管流量控制结构,可用于离子液体EMI-的低压和高通量电喷雾真空中的BF 4 。以1 cm (^ {2}) 的形式构造多达1900个发射器的微阵列。在两个极性下,每个发射极的电流都高达5 (mu) A,并且具有启动偏置电压低至470 V,抽气电网传输率高达80%。使用阵列测量的最大阵列发射电流为1.35 mA(1.35 mA / cm (^ {2}) ) 1 cm (^ {2}) 中的1900个发射器的数量。生长在发射器表面的共形碳纳米管森林充当芯吸结构,将液体传输到发射器尖端,提供水力阻抗来调节和均匀化整个阵列的发射。电喷雾束的质谱证实了两种极性的发射均由溶剂化离子组成,并且观察到硅集电极的蚀刻。跨三个数量级的不同发射器阵列尺寸的集电极印记和每个发射器的电流-电压特性显示了整个阵列的出色发射均匀性。提供了作为纳米卫星推进器的设备的性能估计。 [2014-0060]

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