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A facile, robust and scalable method for the synthesis of Pd nanoplates with hydroxylamine as a reducing agent and mechanistic insights from kinetic analysis

机译:用于合成具有羟胺的PD纳米层的容易,鲁棒和可扩展方法,作为动力学分析的还原剂和机械洞察

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Nanocrystals lined with stacking faults have received much attention in recent years due to their typical anisotropic, plate-like geometry and their perplexing formation mechanism. In this report, we introduce a simple and reliable method for the scalable production of Pd nanoplates containing stacking faults. The success of our protocol was reliant on the use of hydroxylamine as a reducing agent, which allowed the nucleation and growth of well-defined Pd nanoplates with an average edge length of 24.5 ± 6.6 nm and a thickness of 4.7 ± 0.4 nm. We conducted a kinetic analysis to validate the importance of an appropriate initial reduction rate in determining the formation of seeds lined with stacking faults. To demonstrate the robustness of this synthesis, we conducted a set of control experiments under different experimental conditions such as acidity, temperature, and chemical environment and demonstrated that Pd nanoplates could be obtained as final products in all scenarios. We further extended the batch-based synthesis to a continuous flow reactor, moving one step closer towards high-volume production. Taken together, this method offers both simplicity and reproducibility for the synthesis of Pd nanoplates, which will enable future mechanistic studies and applications.
机译:由于其典型的各向异性,板状几何形状及其令人困惑的地层机制,近年来,纳米晶体近年来受到了很多关注。在本报告中,我们介绍了一种简单可靠的方法,可用于含有堆叠故障的PD纳米板的可扩展生产。我们的方案的成功依赖于使用羟胺作为还原剂,其允许核心明确的Pd纳米板的成核和生长,平均边缘长度为24.5±6.6nm,厚度为4.7±0.4nm。我们进行了动力学分析,以验证适当的初始减少率的重要性,以确定叠加堆垛堆积的种子的形成。为了证明这种合成的鲁棒性,我们在不同的实验条件下进行了一组控制实验,例如酸度,温度和化学环境,并证明了Pd纳米板可以在所有场景中作为最终产品获得。我们进一步将基于批量的合成延伸到连续流量反应器,移动一步更靠近大批量生产。在一起,该方法为PD纳米板合成提供简单性和再现性,这将使未来的机械研究和应用。

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