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Optical Properties of Disulfide-Functionalized Diacetylene Self-Assembled Monolayers on Gold: a Spectroscopic Ellipsometry Study

机译:金上二硫键官能化的二乙炔自组装单分子膜的光学性质:光谱椭偏研究

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Spectroscopic ellipsometry (SE) has been applied to study the optical properties of thiolate polydiacetylene (PDA) self-assembled monolayers (SAMs) deposited on low-roughness polycrystalline gold. A systematic investigation of methyl-terminated diacetylene (dihexacosa-7,9-diyn disulfide, DS9) SAMs is presented. The results have been compared with experiments on carbazolyl-derivatized diacetylene (l4-(9H-9-carbazolyl)tet-radeca-10,12-diyn-l-yl disulfide, CDS9) SAMs and with findings recently obtained on SAMs of alkanethiols. The SE measurements have been complemented with X-ray photoelectron spectroscopy and atomic force microscopy data. The difference between SE spectra measured after and before the monolayer assembly (δΨ =Ψ_(SAM) -Ψ_(Au) and δΔ = Δ_(SAM) -Δ_(Au)) showed specific absorptions of the adsorbed molecules, including narrow features in the 500-700 nm wavelength range which have been interpreted as markers of the SAM polymerization state. To our knowledge, these results represent the first unambiguous optical detection of polymer-induced absorptions in the case of diacetylene SAMs. Polymerization mainly occurred in the so-called red phase (absorption peak around 550 nm) on very flat surface regions obtained by flame-annealing the sample. The polymeric phase was stable against moderate UV irradiance. The detection of the blue phase was questionable as specific absorptions (around 640 nm) overlap with an absorption band related to the formation of the S-Au interface.
机译:椭圆偏振光谱法(SE)已用于研究沉积在低粗糙度多晶金上的硫醇盐聚二乙炔(PDA)自组装单分子膜(SAMs)的光学性质。进行了甲基封端的乙炔(dihexacosa-7,9-diyn二硫化物,DS9)SAM的系统研究。将结果与咔唑基衍生化的二乙炔(14-(9H-9-咔唑基)tet-radeca-10,12-二炔基-基二硫化物,CDS9)SAM的实验进行了比较,并与最近在链烷硫醇的SAM上获得的发现进行了比较。 SE测量得到X射线光电子能谱和原子力显微镜数据的补充。单层组装前后测得的SE光谱之间的差异(δΨ=Ψ_(SAM)-Ψ_(Au)和δΔ=△_(SAM)-Δ_(Au))显示了被吸附分子的比吸收,包括500-700 nm波长范围已被解释为SAM聚合状态的标志。据我们所知,在二乙炔SAMs的情况下,这些结果代表了聚合物诱导的吸收的首次明确光学检测。聚合主要发生在通过火焰退火样品获得的非常平坦的表面区域上的所谓红相(550 nm附近的吸收峰)上。聚合物相对于中等的紫外线辐照是稳定的。蓝相的检测存在疑问,因为特定吸收(约640 nm)与与S-Au界面形成有关的吸收带重叠。

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