Gabrielli C, Perrot H, Rose D, Rubin A, Toqué J P, Pham M C, Piro B
LISE-UPR 15 du CNRS, Université Pierre et Marie Curie-Paris 6, 4, place Jussieu (case 133), 75252 Paris Cedex 05, France.
Rev Sci Instrum. 2007 Jul;78(7):074103. doi: 10.1063/1.2751093.
A better understanding of the mechanisms located at the solid/electrolyte interface is becoming essential to the development of new applications in the electrochemical fields. The fast quartz crystal microbalance is an attractive and powerful gravimetric sensor which can be used in the dynamic regime to determine a mass/potential transfer function. The principle is equivalent to classical electrochemical impedance measurements; the only difference is the determination of mass changes given by the quartz crystal microbalance rather than current changes following sine wave modulations of the applied potential. This function appears very well adapted to characterize ionic exchanges at the electrochemical interface. Frequency/voltage converters are the key devices in translating the microbalance frequency response in terms of a continuous voltage change. The latter allows the transfer function to be obtained via a frequency response analyzer. Different converters were tested in this work in order to improve the performances of the experimental setup.
更好地理解固体/电解质界面处的机制对于电化学领域新应用的开发变得至关重要。快速石英晶体微天平是一种有吸引力且功能强大的重量传感器,可用于动态测量以确定质量/电位传递函数。其原理等同于经典的电化学阻抗测量;唯一的区别在于通过石英晶体微天平确定质量变化,而非在施加电位的正弦波调制后确定电流变化。该函数似乎非常适合表征电化学界面处的离子交换。频率/电压转换器是将微天平频率响应转换为连续电压变化的关键器件。后者允许通过频率响应分析仪获得传递函数。为了提高实验装置的性能,在这项工作中测试了不同的转换器。