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Influence of temperature on hydrogen electrosorption into palladium-noble metal alloys. Part 3: Palladium-rhodium alloys

机译:温度对氢气对钯贵金属合金电吸附的影响。第3部分:钯铑合金

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Hydrogen electrosorption into Pd-Rh alloys (containing more than 60 at.% Pd in the bulk) was studied in acidic solution (0.5 M H_2SO_4) using cyclic voltammetry and chronoamperometry. Alloys were obtained by electrodeposition from baths containing PdCl_2, RhCl_3 and HCl. The influence of temperature (in range between 283 K and 328 K) and alloy bulk composition on parameters of hydrogen sorption in Pd-Rh alloys was examined. It has been found that for the temperature range studied the maximum hydrogen absorption capacity is the highest in 283 K and decreases with temperature increase. It has been established that potentials of hydrogen phase transitions (α → β and β → α) are shifted negatively with increasing temperature. The potential of absorbed hydrogen oxidation peak is shifted negatively with increasing temperature. With increasing Rh bulk content the phase transition potentials and hydrogen oxidation peak are shifted into lower potentials. An alloy containing 92.6 at.% Pd is characterized by the highest hydrogen absorption capacity with H/M ratio exceeding 0.80.
机译:使用循环伏安法和计时电流法研究了在酸性溶液(0.5 M H_2SO_4)中氢电吸附到Pd-Rh合金中(本体中Pd含量超过60 at。%)。通过电沉积从含有PdCl_2,RhCl_3和HCl的浴中获得合金。研究了温度(介于283 K和328 K之间)和合金本体组成对Pd-Rh合金中氢吸附参数的影响。已发现,在所研究的温度范围内,最大氢吸收容量在283 K中最高,并随温度升高而降低。已经确定,随着温度的升高,氢相变的电势(α→β和β→α)向负方向移动。吸收的氢氧化峰的电位随温度升高而负向移动。随着Rh体积含量的增加,相变电势和氢氧化峰移至较低电势。 Pd含量为92.6 at。%的合金的最大氢吸收容量为H / M超过0.80。

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