Controlled Nickel Nanoparticles: A Review on How Parameters of Synthesis Can Modulate Their Features and Properties

Felipe e Silva, V. Salim, Thenner Rodrigues
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Abstract

Nickel nanoparticles have wide-ranging applications in diverse fields, including electronics, catalysis, and biomedicine. The unique properties of these nanoparticles depend on their physical and chemical attributes. Consequently, there is a growing interest in understanding the performance relationships through a nuanced comprehension of their controlled synthesis. This review explores the advancements related to precisely defined nickel nanoparticles, with a specific focus on unraveling the connections between performance and their physical/chemical characteristics. The emphasis is on elucidating how manipulating synthetic parameters, such as precursor concentration, reductant agent properties, temperature, time, and the presence of stabilizing agents, can provide additional avenues for refining the performance in terms of size and morphology. Through the analysis of each variable, we illustrate the methodology for synthesizing well-controlled nickel nanoparticles, showcasing the ability to exert precision over their composition, size, and surface morphology.
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可控镍纳米颗粒:综述合成参数如何改变纳米粒子的特征和性能
镍纳米粒子在电子、催化和生物医学等多个领域有着广泛的应用。这些纳米粒子的独特性能取决于其物理和化学属性。因此,越来越多的人希望通过对其受控合成的细致理解来了解其性能关系。本综述探讨了与精确定义的镍纳米粒子有关的进展,重点是揭示性能与其物理/化学特性之间的联系。重点在于阐明操纵合成参数(如前驱体浓度、还原剂特性、温度、时间和稳定剂的存在)如何为完善尺寸和形态方面的性能提供更多途径。通过对每个变量的分析,我们说明了合成控制良好的镍纳米粒子的方法,展示了精确控制其成分、尺寸和表面形态的能力。
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