首页> 外文期刊>The journal of physics and chemistry of solids >Ammonia borane with polyvinylpyrrolidone as a hydrogen storage material: Comparison of different molecular weights
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Ammonia borane with polyvinylpyrrolidone as a hydrogen storage material: Comparison of different molecular weights

机译:氨气硼烷与聚乙烯吡咯烷酮作为储氢材料:不同分子量的比较

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摘要

We report thermal and infrared transmission measurements on ammonia borane (NH3BH3, AB), and its bulk composites with polyvinylpyrrolidone (PVP) as a function of temperature. X-ray studies reveal an amorphous phase combined the AB crystalline with the addition of the polymer. We determine the activation energies in the temperature range from 25 degrees C to 300 degrees C with various ramp rates via kinetic studies. These activation energies of AB:PVP bulk composites were found to be lower than the pristine AB. Overall, the composites with higher molecular weight and high polymer content revealed the greatest decrease in Ea. The weight loss provided similar results, it decreased from 57.8% for AB to 10.5% for the polymer composite. The FT-IR studies of AB and the bulk composites showed evidence of the interaction between the boron atom of AB and the oxygen atom of the carbonyl group in PVP. An explanation of the hydrogen release pattern during decomposition at higher temperatures ranging from 25 degrees C to 300 degrees C is also provided.
机译:我们在氨硼烷(NH 3B3,AB)上报告热量和红外透射测量,以及具有聚乙烯基吡咯烷酮(PVP)的块状复合材料作为温度的函数。 X射线研究显示无定形相,将AB结晶与添加聚合物组合。我们通过动力学研究,通过动力学研究确定温度范围内的温度范围内的激活能量。发现AB的这些激活能量:PVP散装复合材料的较低比原始AB低。总的来说,具有较高分子量和高分子含量的复合材料显示EA最大的降低。重量损失提供了类似的结果,它从AB的57.8%降低至聚合物复合材料的10.5%。 AB和块状复合材料的FT-IR研究显示了AB的硼原子与PVP中羰基的硼原子之间的相互作用的证据。还提供了在从25℃至300摄氏度范围内的较高温度下分解期间的氢释放图案的说明。

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