Shin Hyeon Suk, Yang Hyun Jung, Kim Seung Bin, Lee Mu Sang
Laboratory for Vibrational Spectroscopy, Department of Chemistry, Pohang University of Science & Technology, San 31, Hyojadong, Pohang 790-784, Republic of Korea.
J Colloid Interface Sci. 2004 Jun 1;274(1):89-94. doi: 10.1016/j.jcis.2004.02.084.
Silver nanoparticles were prepared by using polyvinyl pyrrolidone (PVP) as a stabilizer and gamma-irradiation. Transmission electron microscopy (TEM) results showed that both the amount and the molecular weight of PVP in the irradiated solution considerably affect the average size of the silver nanoparticles. The average size of the silver nanoparticles decreases with increasing the amount of PVP in the solution, but increases with increasing its molecular weight. Further, TEM showed that the silver nanoparticles become disassembled into smaller nanoparticles after dilution with distilled water and sonication. Since the processes of dilution and sonication are not expected to result in chemical reactions or to split the silver nanoparticles, we conclude that each silver nanoparticle prepared by [Formula: see text] -irradiation consists of several smaller nanoparticles surrounded by PVP. Thus, based on these observations, we propose a three-step mechanism for the growth of the silver nanoparticles under the conditions considered here. In the first step, the silver ions interact with PVP, then in the second step the silver ions that are exposed to gamma-irradiation are reduced to silver atoms; nearby silver atoms then aggregate at close range. These aggregates are the primary nanoparticles. Finally, these primary nanoparticles coalesce with other nearby primary nanoparticles or interact with PVP to form larger aggregates which are the secondary (final) nanoparticles.
采用聚乙烯吡咯烷酮(PVP)作为稳定剂并通过γ射线辐照制备了银纳米颗粒。透射电子显微镜(TEM)结果表明,辐照溶液中PVP的量和分子量均会显著影响银纳米颗粒的平均尺寸。银纳米颗粒的平均尺寸随溶液中PVP量的增加而减小,但随其分子量的增加而增大。此外,TEM显示,用蒸馏水稀释并超声处理后,银纳米颗粒会分解成更小的纳米颗粒。由于稀释和超声处理过程预计不会导致化学反应或使银纳米颗粒分裂,我们得出结论,通过γ射线辐照制备的每个银纳米颗粒都由几个被PVP包围的较小纳米颗粒组成。因此,基于这些观察结果,我们提出了在此处考虑的条件下银纳米颗粒生长的三步机制。第一步,银离子与PVP相互作用,然后在第二步中,受到γ射线辐照的银离子被还原为银原子;附近的银原子随后在近距离聚集。这些聚集体就是初级纳米颗粒。最后,这些初级纳米颗粒与其他附近的初级纳米颗粒聚结或与PVP相互作用形成更大的聚集体,即次级(最终)纳米颗粒。