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首页> 外文期刊>Journal of nanoscience and nanotechnology >Self-assembled molecular pattern by chemical lithography and interfacial chemical reactions
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Self-assembled molecular pattern by chemical lithography and interfacial chemical reactions

机译:通过化学光刻和界面化学反应自组装分子图案

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摘要

The fabrication of lipid-modified molecular patterns by Chemical Lithography combined with interfacial chemical reactions is reported. In this method, self-assembled monolayers (SAMs) of 4'-nitro-1,1'-biphenyl-4-thiol (NBT) were structured by Chemical Lithography which produced cross-linked 4'-amino-1,1'-biphenyl-4-thiol (cABT) monolayers within a nitro-terminated (NBT) matrix. The terminal amino groups in the cABT monolayer were diazotized to create diazo cations, and the lipid monolayer with negative charge was assembled on the diazo regions by electrostatic attraction. Under the exposure of UV light, the photoreaction occurs. The diazonium groups interacting with the lipid headgroups via electrostatic attraction decompose and release N-2 which leads to the lipid monolayer covalently attaching to the cABT region. The presence of phosphorus in X-ray photoelectron spectra (XPS) reveals the binding of the phospholipid layer to the cABT surface. Atomic force microscopy (AFM) images display that lipid-modified molecular patterns with different sizes and shapes and with a thickness of ca. 2.5 nm have been formed. The resulting lipid-modified molecular patterns are considered to be a first step towards obtaining stable biointerfacing patterns and studying biomolecular recognition.
机译:报道了通过化学平版印刷结合界面化学反应制备脂质修饰的分子图案。在此方法中,通过化学光刻技术构造了4'-硝基-1,1'-联苯-4-硫醇(NBT)的自组装单分子膜(SAMs),该分子产生了交联的4'-氨基-1,1'-硝基末端(NBT)基质中的联苯-4-硫醇(cABT)单层。将cABT单层中的末端氨基重氮化以生成重氮阳离子,并通过静电吸引将带有负电荷的脂质单层组装在重氮区域上。在紫外线照射下,发生光反应。重氮鎓基团通过静电吸引与脂质头基相互作用,分解并释放N-2,这导致脂质单层共价连接到cABT区。 X射线光电子能谱(XPS)中磷的存在揭示了磷脂层与cABT表面的结合。原子力显微镜(AFM)图像显示,脂质修饰的分子图案具有不同的大小和形状,厚度约为ca。形成了2.5nm。所得的脂质修饰的分子模式被认为是获得稳定的生物界面模式和研究生物分子识别的第一步。

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