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Facile synthesis of a hollow Ni–Fe–B nanochain and its enhanced catalytic activity for hydrogen generation from NaBH4 hydrolysis

机译:空心Ni-Fe-B纳米链的简便合成及其对NaBH4水解产生氢的增强催化活性

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摘要

A hollow Ni–Fe–B nanochain is successfully synthesized by a galvanic replacement method using a Fe–B nanocomposite and a NiCl _(2) solution as the template and additional reagent, respectively. Both the concentration of Ni and the morphology of the resulting Ni–Fe–B alloy are controlled by varying the duration of the replacement process during the synthesis. The Ni–Fe–B sample synthesized for 60 min (Ni–Fe–B-60) shows the best catalytic activity at 313 K, with a hydrogen production rate of 4320 mL min ~(?1) g _(cat) ~(?1) and an activation energy for the NaBH _(4) hydrolysis reaction of 33.7 kJ mol ~(?1) . The good performance of Ni–Fe–B-60 towards the hydrolysis of NaBH _(4) can be ascribed to both hollow nanochain structural and electronic effects. Furthermore, the effects of temperature, catalyst amount, and concentration of NaOH and NaBH _(4) on the hydrolysis process are systematically studied, and an overall kinetic rate equation is obtained. The hollow Ni–Fe–B nanochain catalyst also shows good reusability characteristics and maintained its initial activity after 5 consecutive cycles.
机译:通过电置换法分别使用Fe–B纳米复合材料和NiCl _(2)溶液分别作为模板和其他试剂,成功地合成了空心的Ni–Fe–B纳米链。通过改变合成过程中置换过程的持续时间,可以控制镍的浓度和所形成的镍铁硼合金的形态。合成60 min的Ni–Fe–B样品(Ni–Fe–B-60)在313 K时表现出最佳的催化活性,氢气产生速率为4320 mL min〜(?1)g _(cat)〜( NaBH_(4)水解反应的活化能为33.7 kJ mol〜(?1)。 Ni–Fe–B-60对NaBH _(4)水解的良好性能可归因于中空纳米链的结构和电子效应。此外,系统地研究了温度,催化剂用量以及NaOH和NaBH_(4)的浓度对水解过程的影响,得到了总的动力学速率方程。中空的Ni-Fe-B纳米链催化剂还显示出良好的可重复使用性,并在连续5个循环后保持其初始活性。

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