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The Effect of the Precursor Solution’s Pretreatment on the Properties and Microstructure of the SCS Final Nanomaterials

机译:前体溶液预处理对SCS最终纳米材料性能和微观结构的影响

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摘要

Nanostructured nickel-based catalysts were produced by solution combustion synthesis and it was found that their properties and structure depended on the pretreatment of the precursor solution. X-ray diffraction, N2 adsorption, and an infrared high-speed camera were used to follow the various synthesis steps and to characterize the obtained catalysts, while their catalytic activity was determined in the hydrogenation of maleic acid. It was determined that the amount of water used and the heating of the precursor solution under mild stirring up to 70 °C influenced the nickel nitrate–glycine–water complexes that were formed in the precursor solution in the form of dendrites. These play a key role in the solution combustion synthesis (SCS) reaction mechanism and in particular in the formation of nickel-based catalysts. Understanding the interrelationships between the processing parameters and the ensuing powder properties allowed an efficient optimization of the catalytic performance.
机译:通过溶液燃烧合成产生纳米结构镍催化剂,发现它们的性质和结构依赖于前体溶液的预处理。使用X射线衍射,N 2吸附和红外高速相机遵循各种合成步骤,并表征所得催化剂,而在马来酸的氢化中测定它们的催化活性。确定使用的水量和在温和搅拌下的前体溶液加热至70℃,影响了在树突形式的前体溶液中形成的硝酸镍 - 甘氨酸 - 水络合物。这些在溶液燃烧合成(SCS)反应机制中起关键作用,特别是在形成镍基催化剂中。了解加工参数和随后的粉末性能之间的相互关系允许有效优化催化性能。

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