Smartly designed photoreactive silica nanoparticles and their reactivity

反应性(心理学) 表面改性 疏水二氧化硅 分散性 化学 硅烷 纳米颗粒 正硅酸乙酯 有机硅 二苯甲酮 叠氮化物 有机化学 点击化学 材料科学 化学工程 纳米技术 替代医学 工程类 病理 物理化学 医学
作者
Anna Peled,Maria Naddaka,Jean‐Paul Lellouche
出处
期刊:Journal of Materials Chemistry [Royal Society of Chemistry]
卷期号:21 (31): 11511-11511 被引量:25
标识
DOI:10.1039/c1jm00055a
摘要

Monodisperse, colloidal silica nanoparticles (NPs) are being widely investigated due to a variety of applications in various fields of chemistry. Many works utilize incorporation of various functional groups to silica NPs for their further modifications. However, at present no benzophenone (BPh) or phenyl azide (PA) containing silica NPs exist. Upon UV irradiation BPh and PA form highly reactive species that react with any organic material. Here we present a convenient method for the preparation of novel hybrid photoreactive silica NPs (denoted as SiO2@photoreactive group) prepared by co-condensation of photoreactive organosilanes and tetraethyl orthosilicate (TEOS) to obtain SiO2@PA and SiO2@BPh NPs. The reactivity of these two types of silica NPs is compared to that of perfluorinated phenyl azide (PFPA) based SiO2 NPs. The reactivity evaluation is carried out by the reaction of the three types of SiO2 NPs with highly inert poly(2-chloro-paraxylelene) films. It is found that, in contrast to what is stated in the literature, PA is much more reactive than PFPA, when dealing with solid state photochemical reactions. Next, photoreactive silica NPs on polymer films are used as an intermediate functional phase for a second modification step using silane-based chemistry. A successful incorporation of amine functionality onto silica NPs is achieved by their reaction with 3-aminopropyltriethoxysilane (APTES) and is verified by fluorescence microscopy. This strategy provides a general and versatile route to efficient functionalization of silica by light.
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