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改进的 Finke-Watzky 机制用于银纳米粒子的两步形核生长。

Modified Finke-Watzky mechanisms for the two-step nucleation and growth of silver nanoparticles.

机构信息

Department of Mining and Metallurgical Engineering, Amirkabir University of Technology, Tehran, Iran.

出版信息

Nanotechnology. 2018 Dec 14;29(50):505602. doi: 10.1088/1361-6528/aae3dd. Epub 2018 Sep 24.

Abstract

In this work, a new modification was made on the Finke-Watzky mechanism for investigating the nucleation and growth steps in the synthesis of silver nanoparticles (AgNPs). UV-vis spectrophotometry and transmission electron microscopy evaluations proved that the former linear form of Finke-Watzky mechanism is not efficient for describing the nucleation and growth steps of AgNPs synthesis. In this manner, the Finke-Watzky mechanism was modified by considering a reversible pseudo first-order reaction for nucleation step. In addition, no assumptions were made in mathematical calculations related to the rate law which were previously adapted by the researchers in this field; i.e. [A] > [A] and k [A] ≫ k . These considerations led to the development of a kinetic model that is more closely related to what really occurs within the synthesis system. Kinetics data were obtained in a well-known synthesis process of AgNPs namely as sodium borohydride reduction. Furthermore, it was elucidated that polyvinylpyrrolidone (PVP) retards both the nucleation and growth steps resulting in the isotropic growth of seeds; this effect subtly provides a tunable synthesis process for achieving desired size of AgNPs. Moreover, Fourier-transform infrared spectroscopy revealed that the nitrogen atoms present in the PVP molecules are responsible for the interaction of PVP with AgNPs.

摘要

在这项工作中,对 Finke-Watzky 机制进行了新的修改,以研究银纳米粒子(AgNPs)合成中的成核和生长步骤。紫外-可见分光光度法和透射电子显微镜评估证明,以前的 Finke-Watzky 机制线性形式对于描述 AgNPs 合成的成核和生长步骤并不有效。因此,通过考虑成核步骤的可逆拟一级反应对 Finke-Watzky 机制进行了修改。此外,在与该领域研究人员以前采用的速率定律相关的数学计算中没有做出任何假设,即 [A] > [A] 和 k [A] ≫ k 。这些考虑导致开发了一种更紧密地与合成系统内部实际发生情况相关的动力学模型。动力学数据是在众所周知的 AgNPs 合成过程中获得的,即硼氢化钠还原。此外,阐明了聚乙烯吡咯烷酮(PVP)既延迟成核又延迟生长步骤,导致种子的各向同性生长;这种效果微妙地为实现所需尺寸的 AgNPs 提供了可调节的合成过程。此外,傅里叶变换红外光谱揭示了 PVP 分子中存在的氮原子负责 PVP 与 AgNPs 的相互作用。

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