Anal Chem. 2010 Oct 15;82(20):8377-81. doi: 10.1021/ac1017953.
Because electric field distribution is determined by emitter size and shape, sprayer tip geometry determines the optimum liquid flow rate that can be processed by the electrospray ionization interface. Electric field is the highest at the sharpest edge of an electrode; therefore, for a beveled tip, the field is highest at the very tip, and for a conventional symmetrically tapered tip, the field is the highest around the rim of the electrode. Electrospray performance as a function of flow rate was investigated using both continuous infusion and peak-based analysis. The sharpest symmetrical emitter gave the most stable electrospray ionization (ESI) at flow rates ≤0.10 μL/min, while beveled emitters provided significantly better performance at expanded flow rates up to 1 μL/min. The use of beveled emitters offers the potential for increased versatility in electrospray ionization interfaces.
由于电场分布由发射器的大小和形状决定,因此喷雾器尖端的几何形状决定了可以通过电喷雾电离接口处理的最佳液体流速。电场在电极的最尖锐边缘处最高;因此,对于斜角尖端,电场在尖端处最高,而对于常规对称锥形尖端,电场在电极边缘周围最高。使用连续输注和基于峰的分析研究了流速对电喷雾性能的影响。最锋利的对称发射器在流速≤0.10 μL/min 时给出了最稳定的电喷雾电离(ESI),而斜角发射器在扩展流速高达 1 μL/min 时提供了显著更好的性能。使用斜角发射器为电喷雾电离接口提供了增加多功能性的潜力。