首页> 外文OA文献 >Surface functionalization with phosphazene substrates, Part IV: Silica and Si(100) surface functionalization using cyclophosphazenes partially substituted with trialkoxysilane derivatives and PEG-750 monomethylether, 2,2,3,3-tetrafluoropropanol and 4-hydroxyazobenzene
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Surface functionalization with phosphazene substrates, Part IV: Silica and Si(100) surface functionalization using cyclophosphazenes partially substituted with trialkoxysilane derivatives and PEG-750 monomethylether, 2,2,3,3-tetrafluoropropanol and 4-hydroxyazobenzene

机译:磷腈底物的表面官能化,第四部分:使用部分被三烷氧基硅烷衍生物和PEG-750单甲基醚,2,2,3,3-四氟丙醇和4-羟基偶氮苯取代的环磷腈的二氧化硅和Si(100)表面官能化

摘要

This paper deals with the possibility of functionalizing the surface of silicon-based materials by exploiting cyclophosphazenes containing suitable substituent groups. Thus, phosphazene trimers were prepared, containing about 50% of the reactive sites substituted by gamma-amino-propyltriethoxy silane (APTES), while the residual positions in the cycle contain poly(ethylene glycol) monomethylether (MW approx. 750; PEG-750-ME), tetrafluoropropanol (TFP) and 4-hydroxyazobenzene (AzB). Using these novel materials we succeeded in surface functionalizing SiO2 beads in the coating of silicon wafers or sodalime slides and in the preparation of cyclophosphazene-based monoliths in the presence of hydrolyzed TEOS by sol-gel technique. The whole series of products has been characterized by standard spectroscopic (IR, UV-Vis, H-1-, C-13-, Si-29- and P-31-NMR, both in solution and in solid state) and thermal (DSC and DMTA) techniques. This approach to the surface functionalization of silicon-based materials containing carefully selected substituents is completely general and can be used to attach to the hydroxylated surfaces practically any type of nucleophile that can be supported on the cyclophosphazene ring.
机译:本文探讨了通过利用含有合适取代基的环磷腈来官能化硅基材料表面的可能性。因此,制备了磷腈三聚体,其包含约50%的被γ-氨基丙基丙基三乙氧基硅烷(APTES)取代的反应位点,而循环中的剩余位置包含聚(乙二醇)单甲基醚(MW约750; PEG-750) -ME),四氟丙醇(TFP)和4-羟基偶氮苯(AzB)。使用这些新型材料,我们成功地在硅片或钠硅酸钠涂层的表面上对SiO2珠进行了表面功能化,并在通过溶胶-凝胶技术水解的TEOS存在下制备了环磷腈基整料。整个系列产品的特征在于标准光谱仪(溶液,固态时的IR,UV-Vis,H-1-,C-13-,Si-29-和P-31-NMR)和热光谱仪DSC和DMTA)技术。这种对含有精心选择的取代基的硅基材料进行表面功能化的方法是完全通用的,可用于将实际上可以负载在环磷腈环上的任何类型的亲核试剂连接到羟基化表面上。

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