Van Keuren Edward, Bone Alysia, Ma Changbao
Department of Physics, Georgetown University, Washington, DC 20057, USA.
Langmuir. 2008 Jun 17;24(12):6079-84. doi: 10.1021/la800290s. Epub 2008 May 15.
Self-organization of molecules in solution is an important natural and synthetic process, in particular for the preparation of nanomaterials. However, the mechanism of growth for solution-based nanoparticle formation is not always well understood. We present results that clarify these mechanisms in solutions of magnesium phthalocyanine in which the self-organization is induced by addition of a miscible nonsolvent. From simultaneous measurements of the sizes of the growing nanoparticles by photon correlation spectroscopy and the molecular concentration by absorption and fluorescence spectroscopy, we have found that the particles do not grow by molecular diffusion to the surfaces. These results suggest the importance of unstable clusters in the growth process. We also observed a strong dependence of the particle size on the initial concentration which we attribute to effects of the curvature of the solubility curve.
分子在溶液中的自组装是一个重要的自然和合成过程,特别是在纳米材料的制备方面。然而,基于溶液的纳米颗粒形成的生长机制并不总是被很好地理解。我们展示了一些结果,这些结果阐明了在酞菁镁溶液中的这些机制,其中自组装是通过添加可混溶的非溶剂来诱导的。通过光子相关光谱法同时测量生长中的纳米颗粒的尺寸以及通过吸收和荧光光谱法测量分子浓度,我们发现颗粒并不是通过分子扩散到表面而生长的。这些结果表明不稳定团簇在生长过程中的重要性。我们还观察到颗粒尺寸对初始浓度有很强的依赖性,我们将其归因于溶解度曲线曲率的影响。