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1.
SURFACE ACTIVITY OF ORGANIC COMPLEX-FORMING AGENTS AT THE ELECTRODE/SOLUTION INTERFACE
典型有机络合剂在电极/溶液界面上的表面活性
2.
Electron transfer behaviour of Au electrode/solution interface on laser irradiation
激光照射下金电极/溶液界面的电子转移行为
3.
STATISTICAL MECHANICAL TREATMENT OF ABSORBED MONOLAYER AT ELECTRODE/SOLUTION INTERFACE Ⅱ. The Inner-Layer Differential Capacity of Hg/Aqueous Solution Interface
电极/溶液界面单分子吸附层的统计力学处理 Ⅱ.汞/水溶液界面的内层微分电容
4.
An eduction of thermodynamics involving the potential difference formula in electrod solution interface
关于电极溶液界面电位差公式的热力学推导
5.
Studies of Metal Anode/Solution Interface Processes, Nanostructures and in Situ Raman Spectroelectochemistry
金属阳极/溶液界面过程、纳米结构和拉曼光谱电化学研究
6.
A liquid junction is the interface between two miscible electrolyte solutions.
液体接界是两个可混溶液的电解质溶液之间的界面。
7.
Study on the Surfactant in Aqueous Solutions by Ultramicroelectrode Voltammetry
超微电极电化学研究表面活性剂水溶液
8.
Electrochemical Investigations of Self-assembled Monolayers Modified Electrode and Liquid/liquid Interface;
自组装膜修饰电极及液/液界面电化学研究
9.
Electrodes are introduced into a water solution.
电极被插入水溶液中。
10.
Research on the Equilibrium Geometric Structure and Electronic Structure in the Interface of Metal Iron and the Solution
金属Fe/水溶液界面几何结构与电子结构研究
11.
Molecular Dynamics Simulations on the Interfacial Structures of Electrolyte Solutions
电解质溶液界面结构的分子动力学模拟研究
12.
Cyclic voltammograms of the modified electrodes showed that the capacitive current and area of the solution-electrode interface were rather large.
从循环伏安法结果得知,被修饰过之电极在水溶液极电极之电容电流及其表面积均较大。
13.
The Influence of Solution and Propoties of the Electrode Surface on Electron Transfer Properties of the Adrenaline;
溶液及电极表面性质对肾上腺素电子转移性能的影响
14.
Liquid water can leach soluble materials from the interface.
液态水能够从界面溶解出可溶性物质。
15.
Electrochemical Investigations of the Functionalization of Carbon Nanotube Modified Electrode and Liquid/Liquid Interface;
功能化碳纳米管修饰电极和液/液界面电化学研究
16.
Solvent Effect of Molecular Spectra in Bulk Solution and at Liquid/Liquid Interface;
均相和液/液界面分子光谱的溶剂效应
17.
Enhancing compressive strength of electrorheological fluid by patterning the electrode
极板形貌修饰对电流变液/极板界面滑移抑制实验研究
18.
In this case, a flow of electrons from electrode to solution occurs.
这样,就发生从电极到溶液的电子流动。