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首页> 外文期刊>Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology >Current-voltage characteristics of an LB monolayer of didecylammonium tricyanoquinodimethanide measured between macroscopic gold electrodes
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Current-voltage characteristics of an LB monolayer of didecylammonium tricyanoquinodimethanide measured between macroscopic gold electrodes

机译:宏观金电极之间测得的双氰基三氰基喹二甲基乙二胺LB LB单层的电流-电压特性

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摘要

Didecylammonium tricyanoquinodimethanide, a zwitterionic molecule of the type D~+-pi-A~- (where D~+ = ammonium, pi = ethylene "bridge", and A~- = tricyanoquinodimethanide), forms a Pockels-Langmuir monolayer film at the air-water interface. The molecules can be transferred quantitatively as a Langmuir-Blodgett (LB) monolayer onto a gold surface. Using the "cold-gold" evaporation technique, a set of several macroscopic gold electrode pads were evaporated atop the LB monolayer. Pads which had macroscopic defects were electrical short circuits, but across many pads finite electrical currents were observed as a function of applied bias; however, no obvious electrical rectification was found. The monolayer thickness on a gold substrate was measured by XPS to be approx 2 A. Reflection-absorption infrared spectroscopy (RAIRS) indicates that the molecules have a preferred orientation in the film, but are not well ordered. Angle-resolved X-ray photoelectron spectroscopy (XPS) suggests that many of the molecules are oriented anti-parallel to each other, possiblybecause dipole-dipole forces favour such an anti-parallel orientation. This latter observation helps to explain why no electrical rectification was found.
机译:D〜+ -pi-A〜-型的两性离子分子(其中D〜+ =铵,pi =乙烯“桥”,而A〜-=三氰基喹二甲基甲酰胺)双癸基铵三氰基喹二甲基化物在膜表面形成Pockels-Langmuir单层膜。空气-水界面。分子可以作为Langmuir-Blodgett(LB)单层定量转移到金表面。使用“冷金”蒸发技术,将一组几个宏观金电极焊盘蒸发到LB单层上。具有宏观缺陷的焊盘是电短路,但在许多焊盘上观察到的有限电流是施加的偏置的函数;但是,没有发现明显的电整流。通过XPS测量金基底上的单层厚度约为2A。反射吸收红外光谱(RAIRS)表明分子在膜中具有优选的取向,但排列不整齐。角度分辨X射线光电子能谱(XPS)表明,许多分子彼此反平行取向,可能是因为偶极子-偶极力有利于这种反平行取向。后一个观察结果有助于解释为什么未找到电气整流。

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