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Particle Fabrication Using Inkjet Printing onto Hydrophobic Surfaces for Optimization and Calibration of Trace Contraband Detection Sensors

机译:通过在疏水表面上喷墨印刷进行颗粒制造以优化和校准痕量违禁品检测传感器

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摘要

A method has been developed to fabricate patterned arrays of micrometer-sized monodisperse solid particles of ammonium nitrate on hydrophobic silicon surfaces using inkjet printing. The method relies on dispensing one or more microdrops of a concentrated aqueous ammonium nitrate solution from a drop-on-demand (DOD) inkjet printer at specific locations on a silicon substrate rendered hydrophobic by a perfluorodecytrichlorosilane monolayer coating. The deposited liquid droplets form into the shape of a spherical shaped cap; during the evaporation process, a deposited liquid droplet maintains this geometry until it forms a solid micrometer sized particle. Arrays of solid particles are obtained by sequential translation of the printer stage. The use of DOD inkjet printing for fabrication of discrete particle arrays allows for precise control of particle characteristics (mass, diameter and height), as well as the particle number and spatial distribution on the substrate. The final mass of an individual particle is precisely determined by using gravimetric measurement of the average mass of solution ejected per microdrop. The primary application of this method is fabrication of test materials for the evaluation of spatially-resolved optical and mass spectrometry based sensors used for detecting particle residues of contraband materials, such as explosives or narcotics.
机译:已经开发出一种利用喷墨印刷在疏水性硅表面上制造微米尺寸的硝酸铵单分散固体颗粒的图案化阵列的方法。该方法依赖于将来自按需滴(DOD)喷墨打印机的一滴或更多滴硝酸硝酸铵水溶液分配到全氟癸基三氯硅烷单层涂层疏水的硅基板上的特定位置。沉积的液滴形成球形盖的形状。在蒸发过程中,沉积的液滴保持这种几何形状,直到形成固体微米大小的颗粒。固体颗粒的阵列通过打印机台的顺序平移获得。将DOD喷墨印刷用于离散颗粒阵列的制造可精确控制颗粒特征(质量,直径和高度)以及颗粒数量和基材上的空间分布。单个粒子的最终质量通过使用重量法测量每个微滴喷射的溶液的平均质量来精确确定。该方法的主要应用是制造测试材料,以评估基于空间分辨光学和质谱的传感器,该传感器用于检测违禁材料(例如炸药或麻醉品)的颗粒残留。

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