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Remarkably enhanced adhesion of coherently aligned catechol-terminated molecules on ultraclean ultraflat gold nanoplates

机译:紧密排列的邻苯二酚封端分子在超净超平金纳米板上的粘附力显着增强

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摘要

We report the characterization and formation of catechol-terminated molecules immobilized on gold nanoplates (Au NPLs) using N-(3,4-dihydroxyphenethyl)-2-mercaptoacetamide (Cat-EAA-SH). Single-crystalline Au NPLs, synthesized using a one-step chemical vapor transport method, have ultraclean and ultraflat surfaces that make Cat-EAA-SH molecules aligned into a well-ordered network of a large-scale. Topographic study of the catechol-terminated molecules on Au NPLs using atomic force microscopy showed more orderly orientation and higher density, leading to significantly higher adhesion as observed from local force-distance curves than those on other Au surfaces. These coherently aligned catechol-terminated molecules on the atomically smooth gold surface led to significanty more reproducible and thus more physico-chemically meaningful measurements than was possible before by employing rough gold surfaces.
机译:我们报告了使用N-(3,4-二羟基苯乙基)-2-巯基乙酰胺(Cat-EAA-SH)固定在金纳米板(Au NPL)上邻苯二酚封端的分子的表征和形成。使用一步化学气相传输方法合成的单晶金非专利文献具有超清洁和超平坦的表面,可将Cat-EAA-SH分子排列成大规模的有序网络。使用原子力显微镜对Au NPLs上邻苯二酚封端的分子进行的拓扑研究显示,其取向更有序,密度更高,从局部力距曲线观察到的粘附力明显高于其他Au表面。在原子光滑的金表面上,这些连贯排列的邻苯二酚封端的分子比使用粗糙的金表面所导致的测量结果具有明显更高的可重复性,因此在物理化学上更有意义。

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