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Characterization of Electron Conduction in Unsaturated Organic Monolayers on Silicon(lll) Using Electrical Impedance Spectroscopy

机译:利用电阻抗谱表征硅(III)上不饱和有机单层中的电子传导

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Electrical impedance spectroscopy (EIS) studies of monolayers comprised of molecules of Geranyllinalool and Isophytol revealed structural and molecular organizational details that were compatible with crystallographic dimensions of these molecules. Geranyllinalool (C_(20)H_(40)O) and Isophytol (C_(20)H_(40)) differ principally in the structures of their hydrocarbon backbones. Several carbon-carbon bonds in the Geranyllinalool backbone are double bonds (unsaturated) whereas those bonds in Isophytol are single (saturated). Even though the Geranyllinalool monolayers were thicker than the Isophytol monolayer, EIS further revealed that their conductivities were an order of magnitude higher than those of the Isophytol monolayers. This is consistent with the electron enriched double bonds in the Geranyllinalool backbone providing a better conduction path than the electron depleted single bonds in the Isophytol backbone. The study reveals that unsaturated organic monolayers can improve the electrical connectivity of the semiconductor-biological interface whilst maintaining biocompatibility and passivity.
机译:由Geranyllinalool和Isophytol分子组成的单分子层的电阻抗光谱(EIS)研究表明,与这些分子的晶体学尺寸兼容的结构和分子组织细节。香叶甘油(C_(20)H_(40)O)和异植醇(C_(20)H_(40))的主要区别在于烃骨架的结构。 Geranyllinalool主链中的几个碳-碳键是双键(不饱和),而异植醇中的那些键是单键(饱和)。即使Geranyllinalool单层比Isophytol单层厚,EIS进一步显示其电导率比Isophytol单层高一个数量级。这与香叶菊醇主链中富电子的双键比异植物醇主链中的电子耗尽的单键提供了更好的传导路径是一致的。研究表明,不饱和有机单分子层可以改善半导体-生物界面的电连通性,同时保持生物相容性和钝化性。

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