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A microcalorimeter for measuring heat effects of electrochemical reactions with submonolayer conversions

机译:微量热仪,用于测量具有亚单层转化的电化学反应的热效应

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We present a microcalorimeter for measuring heat effects during electrochemical reactions with conversions down to a few percent of a monolayer, referenced to the electrode’s surface atoms. The design uses a thin pyroelectric polymer foil for temperature measurement at the backside of a thin electrode, similar to the concepts pioneered by the groups of D. A. King and Ch. T. Campbell for UHV adsorption microcalorimetry. To establish intimate thermal contact between electrode and sensor and utmost sensitivity, the free standing sensor and electrode foils are pressed together by air pressure, acting on the electrochemical cell. Pyroelectric temperature sensing is combined with pulsed electrochemistry, where the electrochemical heat is released on a time scale of about 10 ms, which is long enough for thermal equalization of the electrode-sensor assembly but short enough to avoid significant heat loss into electrolyte and cell compartment. As examples heat effects upon Ag deposition and dissolution as well as the electron transfer reaction of [Fe(CN)6]4−/[Fe(CN)6]3− are presented. The latter reaction was also employed for the calibration of the calorimeter. © 2010 American Institute of Physics Article Outline INTRODUCTION EXPERIMENT Cell design Experimental setup Typical experimental procedure THERMAL RESPONSE OF THE ELECTRODE-SENSOR ASSEMBLY TEMPERATURE TRANSIENTS UPON PULSED SILVER DEPOSITION AND DISSOLUTION CALIBRATION OF THE SENSOR FUTURE IMPROVEMENTS
机译:我们提供了一种用于测量电化学反应期间热效应的微热量计,其转换低至单层的百分之几,以电极的表面原子为基准。该设计使用薄的热释电聚合物箔在薄电极的背面进行温度测量,类似于D. A. King和Ch。 T. Campbell用于特高压吸附微量热法。为了在电极和传感器之间建立紧密的热接触并获得最高的灵敏度,独立式传感器和电极箔通过气压作用在电化学电池上,从而被压在一起。热电温度感测与脉冲电化学相结合,其中电化学热以约10 ms的时间尺度释放,该时间长到足以使电极-传感器组件达到热平衡,但又足够短,可以避免大量热量散失到电解质和电池室中。例如,热对Ag沉积和溶解以及[Fe(CN)6 ] 4- [sup> / [Fe(CN)6 ] 3-]的电子转移反应的影响sup>。后一反应也用于量热计的校准。 ©2010美国物理研究所文章概述引言实验电池设计实验装置典型实验程序脉冲银沉积和电极校正改进后电极-传感器组装温度瞬态的热响应和校准

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