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羧基封端的聚乙二醇 - 链烷磷酸酯:在二氧化钛表面的合成与自组装

Carboxy-terminated oligo(ethylene glycol)-alkane phosphate: synthesis and self-assembly on titanium oxide surfaces.

作者信息

Gnauck Mandy, Jaehne Evelin, Blaettler Thomas, Tosatti Samuele, Textor Marcus, Adler Hans-Juergen P

机构信息

Institute for Macromolecular Chemistry and Textile Chemistry, Department of Chemistry and Food Chemistry, Faculty of Science, Technische Universität Dresden, Dresden, Germany.

出版信息

Langmuir. 2007 Jan 16;23(2):377-81. doi: 10.1021/la0606648.

Abstract

The surface immobilization of oligo- and poly(ethylene glycol) on solids is a widely used approach to prevent the nonspecific adsorption of proteins, bacteria, and cells. A novel tri(ethylene glycol) derivative, phosphoric acid-mono(22-carboxy-12,15,18,21-tetraoxadocosyl) ester, was synthesized with the aim to produce self-assembled monolayers (SAMs) on metal/metal oxide surfaces. This compound contains two reactive, terminal moieties: the phosphoric acid group as anchor to the surface, and the carboxylic group as linker for further attachment of molecules such as peptides and proteins to be present at the surface. The adsorption on titanium-dioxide-coated substrates was studied quantitatively and the resulting SAMs were characterized by angle-dependent X-ray photoelectron spectroscopy (XPS) and spectroscopic ellipsometry. XPS data showed that the monomolecular layer is attached with the phosphate group to the substrate, but not fully ordered. The dry adlayer thickness was determined to be 13.4 A, which is less than expected for a densely packed monolayer. Surface concentration calculated from ellipsometry data resulted in a grafting density of 2.03 molecules/nm2.

摘要

在固体表面固定寡聚和聚(乙二醇)是一种广泛用于防止蛋白质、细菌和细胞非特异性吸附的方法。为了在金属/金属氧化物表面制备自组装单分子层(SAMs),合成了一种新型的三(乙二醇)衍生物,磷酸 - 单(22 - 羧基 - 12,15,18,21 - 四氧二十二烷基)酯。该化合物含有两个反应性末端基团:作为表面锚定基团的磷酸基团,以及作为用于进一步连接待存在于表面的肽和蛋白质等分子的连接基团的羧基。对涂覆二氧化钛的基底上的吸附进行了定量研究,并通过角分辨X射线光电子能谱(XPS)和椭圆偏振光谱对所得的SAMs进行了表征。XPS数据表明,单分子层通过磷酸基团附着在基底上,但并非完全有序排列。测定的干吸附层厚度为13.4 Å,小于紧密堆积单分子层的预期厚度。根据椭圆偏振光谱数据计算得到的表面浓度导致接枝密度为2.03个分子/nm²。

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