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High-throughput synthesis and screening of hydrogen-storage alloys

机译:储氢合金的高通量合成与筛选

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摘要

Libraries of mixed-metal hydride materials are synthesized on a silicon microfabricated array of "hot-plate" MEMS devices, which allow high-throughput screening using temperature programmed desorption and infrared thermography. The heating plate of the MEMS device is a membrane with low heat capacity, allowing fast and localized temperature control and the extraction of calorimetric data from thermography. The combination of the synthetic method and screening chip allows a fast determination of the desorption temperature and hydrogen content of the materials. Mixed metal hydrides are synthesized directly. The potential of the method is exemplified by presenting results for the sorption properties of MgxNi1-x hydride thin-film materials. The results are consistent with the literature, showing the highest hydrogen capacity and desorption temperature for the MgH2 phase in Mg-rich compositions and the promotion of a lower temperature desorption from the Mg2NiH4 phase, with a concomitant reduction in hydrogen capacity.
机译:混合金属氢化物材料库是在“热板” MEMS器件的硅微阵列上合成的,可以使用程序升温脱附和红外热像仪进行高通量筛选。 MEMS器件的加热板是一种具有低热容量的薄膜,可实现快速,局部的温度控制以及从热成像中提取量热数据。合成方法和筛选芯片的组合可快速确定材料的解吸温度和氢含量。混合金属氢化物直接合成。该方法的潜力通过给出MgxNi1-x氢化物薄膜材料的吸附性能结果来举例说明。结果与文献一致,显示了富镁组合物中MgH2相的最高氢容量和解吸温度,并促进了Mg2NiH4相中较低的温度解吸,同时氢容量降低。

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