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High-throughput ionic liquid electrospray sources based on dense monolithic arrays of emitters with integrated extractor grid and carbon nanotube flow control structures

机译:基于高密度离子发射器阵列的高通量离子液体电喷雾源,具有集成的萃取栅和碳纳米管流量控制结构

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We report the design, fabrication, and experimental characterization of externally-fed, batch-microfabricated electrospray emitter arrays with integrated extractor grid and carbon nanotube flow control structures for low-voltage and high-throughput electrospray of the ionic liquid EMI-BF4 in vacuum. The conformal carbon nanotube forest on the emitters provides a highly effective wicking structure to transport liquid up the emitter surface to the emission site at the tips. Arrays containing as many as 81 emitters in 1 cm2 were tested and emission currents as high as 5 μA per emitter in both polarities were measured, with a start-up bias voltage as low as 520 V. Imprints formed on the collector electrode and per-emitter IV characteristics showed excellent emission uniformity.
机译:我们报告了离子液体EMI-BF 的低压和高通量电喷雾的外部进料,批量微制造的电喷雾发射器阵列的设计,制造和实验特性,该阵列具有集成的提取器网格和碳纳米管流量控制结构4 在真空中。发射器上的共形碳纳米管森林提供了一种高效的芯吸结构,可将液体沿发射器表面向上传输到尖端处的发射点。测试了在1 cm 2 中包含多达81个发射器的阵列,并且在两个极性下每个发射器的发射电流都高达5μA,启动偏置电压低至520V。形成在集电极上的和每个发射极的IV特性显示出优异的发射均匀性。

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