Faculty of Engineering, University of Yamanashi, 4-3-11, Takeda, Kofu, Yamanashi 400-8511, Japan.
Anal Chem. 2023 Jul 18;95(28):10744-10751. doi: 10.1021/acs.analchem.3c01768. Epub 2023 Jul 7.
An electrospray operated in the steady cone-jet mode is highly stable but the operating state can shift to pulsation or multijet modes owing to changes in flow rate, surface tension, and electrostatic variables. Here, a simple feedback control system was developed using the spray current and the apex angle of a Taylor cone to determine the error signal for correcting the emitter voltage. The system was applied to lock the cone-jet mode operation against external perturbations. For a pump-driven electrospray at a regulated flow rate, the apex angle of the Taylor cone decreased with increasing voltage. In contrast, for a voltage-driven electrospray with low flow resistance, the angle was found to increase with the emitter voltage. A simple algorithm based on iterative learning control was formulated and implemented using a personal computer to automatically correct the emitter voltage in response to the error signal. For voltage-driven electrospray ionization (ESI), the feedback control of the spray current can also be used to regulate the flow rate to an arbitrary value or pattern. Electrospray ionization-mass spectrometry (ESI-MS) with feedback control was demonstrated to produce ion signal acquisition with long-term stability that was insusceptible to the emulated external disturbances.
在稳定的锥射流模式下运行的电喷雾非常稳定,但由于流量、表面张力和静电变量的变化,其工作状态可能会转移到脉动或多射流模式。在这里,开发了一种简单的反馈控制系统,该系统使用喷雾电流和泰勒锥的顶点角度来确定用于校正发射器电压的误差信号。该系统用于锁定锥射流模式操作以抵抗外部干扰。对于以调节流量驱动的泵喷雾,泰勒锥的顶点角度随电压的增加而减小。相比之下,对于具有低流动阻力的电压驱动电喷雾,发现角度随发射器电压的增加而增加。基于迭代学习控制的简单算法,使用个人计算机进行公式化和实现,以自动响应误差信号校正发射器电压。对于电压驱动的电喷雾电离(ESI),喷雾电流的反馈控制也可用于将流速调节到任意值或模式。证明了具有反馈控制的 ESI-MS 可以产生具有长期稳定性的离子信号采集,而不易受到模拟的外部干扰。