State Key Laboratory of Inorganic Synthesis and Preparative Chemistry, College of Chemistry, Jilin University, Changchun 130012, China.
Langmuir. 2010 Jul 6;26(13):11421-6. doi: 10.1021/la100912p.
One advanced synthesis strategy for monodisperse silica cross-linked micellar core-shell nanoparticles (SCMCSNs) involves the use of organosilane termination agent R(n)Si(OR')(4 - n). In this study, we investigated the effects of the organosilane termination agent in the formation of SCMCSNs. Experimental data (synthesis results, (29)Si MAS NMR, molecule probe fluorescence spectra, etc.) from a synthesis system with Pluronic F127 as the template indicate that organosilane either covers or reacts with the surface Si-OH groups of nanoparticles. The reduction of reactive surface Si-OH groups helps to stabilize nanoparticles by avoiding aggregation. The terminating behavior of organosilane is determined by its molecular structure, including (1) the value of n, (2) the length of hydrocarbon chain R, and (3) the charge of R. Effective organosilane termination agents are also applicable to other synthesis mixtures such as the systems using Si(OC(2)H(4)OH)(4) as the silica source or F108 or Brij 700 as the template. Furthermore, we can obtain monodisperse nanoparticles by using the trisodium salt of triacetic acid N-(trimethoxysilylpropyl)ethylenediamine (TANED), which acts not only as a termination agent for the successful synthesis of SCMCSNs but also as a functional group to improve the performance of SCMCSNs in potential applications.
一种制备单分散二氧化硅交联胶束核壳纳米粒子(SCMCSNs)的先进合成策略涉及使用有机硅烷封端剂 R(n)Si(OR')(4 - n)。在本研究中,我们研究了有机硅烷封端剂在 SCMCSNs 形成过程中的作用。来自以 Pluronic F127 为模板的合成体系的实验数据(合成结果、(29)Si MAS NMR、分子探针荧光光谱等)表明,有机硅烷要么覆盖要么与纳米粒子的表面 Si-OH 基团反应。减少反应性表面 Si-OH 基团有助于通过避免聚集来稳定纳米粒子。有机硅烷的封端行为由其分子结构决定,包括(1)n 的值,(2)烃链 R 的长度,和(3)R 的电荷。有效的有机硅烷封端剂也适用于其他合成混合物,如使用 Si(OC(2)H(4)OH)(4) 作为硅源或 F108 或 Brij 700 作为模板的体系。此外,我们可以通过使用三(乙二胺基)三乙酰基三钠 N-(三甲氧基硅基丙基)乙二胺(TANED)获得单分散纳米粒子,它不仅作为 SCMCSNs 成功合成的封端剂,而且作为官能团可以提高 SCMCSNs 在潜在应用中的性能。