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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Different functionalization of the internal and external surfaces in mesoporous materials for biosensing applications using 'click' chemistry
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Different functionalization of the internal and external surfaces in mesoporous materials for biosensing applications using 'click' chemistry

机译:使用“点击”化学法的中空材料在生物传感应用中内外表面的不同功能化

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摘要

We report the use of copper(I)-catalyzed alkyne-azide cycloaddition reaction (CuAAC) to selectively functionalize the internal and external surfaces of mesoporous materials. Porous silicon rugate filters with narrow line width reflectivity peaks were employed to demonstrate this selective surface functionalization approach. Hydrosilylation of a dialkyne species, 1,8-nonadiyne, was performed to stabilize the freshly fabricated porous silicon rugate filters against oxidation and to allow for further chemical derivatization via "click"CuAAC reactions. The external surface was modified through CuAAC reactions performed in the absence of nitrogen-based Cu~I-stabilizing species (i.e., ligand-free reactions). To subsequently modify the interior pore surface, stabilization of the Cu ~I catalyst was required. Optical reflectivity measurements, water contact angle measurements, Fourier transform infrared spectroscopy (FTIR), and X-ray photoelectron spectroscopy (XPS) were used to demonstrate the ability of the derivatization approach to selectively modify mesoporous materials with different surface chemistry on the exterior and interior surfaces. Furthermore, porous silicon rugate filters modified externally with the cell-adhesive peptide Gly-Arg-Gly-Asp-Ser (GRGDS) allowed for cell adhesion via formation of focal adhesion points. Results presented here demonstrate a general approach to selectively modify mesoporous silicon samples with potential applications for cell-based biosensing.
机译:我们报告使用铜(I)催化炔烃-叠氮化物环加成反应(CuAAC)选择性功能化介孔材料的内部和外部表面。具有窄的线宽反射率峰值的多孔硅酸乙酯过滤器用于证明这种选择性表面功能化方法。进行1,8-壬二炔二烯属物质的氢化硅烷化以稳定新制备的多孔硅酸锂多孔过滤器以防氧化并允许通过“ click” CuAAC反应的进一步化学衍生。通过在不存在基于氮的Cu〜I稳定物质的情况下进行的CuAAC反应(即,无配体反应)来修饰外表面。为了随后修饰内部孔表面,需要稳定Cu〜I催化剂。使用光学反射率测量,水接触角测量,傅立叶变换红外光谱(FTIR)和X射线光电子能谱(XPS)来证明衍生化方法能够选择性地修饰具有不同表面化学性质的介孔材料的外部和内部能力表面。此外,用细胞粘附肽Gly-Arg-Gly-Asp-Ser(GRGDS)外部修饰的多孔皱褶硅酸盐过滤器可通过形成粘着点来粘附细胞。本文介绍的结果证明了选择性修饰介孔硅样品的一般方法,具有基于细胞的生物传感的潜在应用。

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