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Features of a practical asymmetric electrode system were studied.

设计了一种非对称电极,这种非对称电极的阳极是Chang电极或Ernst电极,阴极是由直线和圆弧构成的简单电极。

A 125W UV lamp (365nm) was used as light source. The photoelectrochemical system consisted of three electrodes. As follows, Ti/TiO2 thin film was used as the working electrode, graphite electrode as the counter electrode and saturated calomel electrode as the reference electrode. Methyl orange was used as the objective substance. The photoelectrocatalytic degradation of Methyl orange on the Ti/TiO2 thin film was studied .The effects of some factors such as external bias potential, ventilation were also observed.

并以125W紫外线高压汞灯为光源,Ti/TiO2薄膜为工作电极,石墨电极为辅助电极,饱和甘汞电极为参比电极,建立了三电极的光电催化体系,甲基橙溶液为降解对象,并对其在Ti/TiO2薄膜电极上的光电催化降解进行了研究,观察外加电压、通空气等外加因素对甲基橙降解速率的影响。

The PANI-C composite electrodes had better cycling stability than PANI electrodes and the specific capacitance of the composite electrodes was 587F/g, which was much higher than that of the pristine activated carbon (140F/g), owing to the faradic reaction of PANI with the electrolyte.

聚苯胺/活性炭复合电极比活性炭电极具有更高的容量,同时比聚苯胺电极具有更好的循环稳定性。聚苯胺/活性炭复合电极的比电容为587F/g,而活性炭电极仅为140F/g。

The working electrode was prepared by way of depositing TiO2 thin film on conductive ITO glass substrate via sol-gel method. As 3-electrode testing system was then formed combining it with SCE as reference one, black platinum electrode as auxiliary one and PC+LiClO4 solution as electrolyte.

采用溶胶-凝胶法在ITO导电玻璃基片表面制备一层TiO2薄膜,将其作为工作电极,与作为参比电极的饱和甘汞电极、作为辅助电极的铂黑电极、作为电解质溶液的碳酸丙烯酯+高氯酸锂一起构成三电极测试体系。

Under this kind of electric field the relationship between the evaporation rate of distilled water and the semidiameter is pure quadratic.

上电极采用多个针电极的情况下,蒸馏水的蒸发速度比上电极采用单针电极情况下要快,但是并不是随着针电极的倍数增长而成倍的增长。

Electrochemical oscillation of lead electrode in sulfuric acid has been explored with in-situ ellipsometry.Effects of improvement of electrodes properties are affected by increase or decrease of surface temperature of the samples badly during ion implantation. Some theories and methods on substance diffusion transfer have been applied to calorifics to obtain mathematical relation between the surface temperature on the samples and operation time during ion implantation.

掠射式椭圆偏振方法是本论文提出的一种全新的研究方法,为验证这种现场研究方法的可行性,本论文选择了几个用其它方法研究较为成熟的电化学体系并结合本论文研究的化学电源体系,以掠射式椭圆偏振技术进行研究,提出了改良镍电极、锌电极、铝电极和铜电极性能的具体措施或者理解这些电极表面性质和涉及它们的电极过程的实验依据,为使用这些电极的化学电源性能的提高奠定了基础。

The results showed that the CV performance of PbO〓/PbSO〓 and PbSO〓/Pb powder microelectrode transformed from PbCO〓 under the optimize condition (the positive electrode was activated by asymmetric CV and asymmetric square wave current ways and the negative electrode using asymmetric CV) were better. Their electrode performances were as good as those made from leady oxide product by ball mill under the same conditions.

结果表明,将PbCO〓先制成粉末微电极,在30℃ 1.0mol/L H〓SO4〓溶液中经过化学转化为硫酸铅粉末微电极,以不对称信号活化(对PbO〓/PbSO〓电极,采用不对称循环伏安和不对称方波电流两种方法;对PbSO〓/Pb电极,采用不对称循环伏安法)得到电极的性能最好,正极活性物质的利用率高达89%,负极的达95%。

Using the con- tinuous current law to deposit Pt and Fe, then through the high temperature heat treatment , the electrodes were prepared and characterized by scanning electronic microscope, X-ray diffraction, energy disperse spectroscope as well as inductively coupled plasma.

将预处理后的钛片作为电极基体,采用恒电流法沉积Pt和Fe,通过高温热处理得到Ti/Pt-Fe电极,通过扫描电镜、X射线衍射、电子能谱以及等离子发射光谱等方法对所制备电极表面形貌、组分的合金化程度、催化层成分组成以及电极寿命等进行了表征;在煤浆电解过程中,采用两电极体系,对所制备电极的电催化活性进行了测试。

The sample of inner electrode for American medical applications has been analyzed,the preparation process of platinum inner electrode has been researched,and the factor of influence on electrode forming has been analyzed in the article.

剖析了美国医用内电极样品,研究了医用铂金内电极的制备工艺,分析了影响电极成型的参数,制备出符合美国医用内电极标准的铂金内电极

The chemistry compatibility of the electrode and electrolyte at high temperature and effects of the sintering temperature on the microstructure and electrochemical properties were investigated, respectively. The results showed the sintering temperature has effect on the polarization resistance of the electrode. At moderate temperature, a fine microstructure with moderate porosity and well-necked particles has been formed, and the electrode gave the lowest polarization resistance.

考察了电极材料与电解质材料在高温时的化学相容性;研究了烧结温度对电极的微观形貌及电化学性能的影响,结果表明,烧结温度过高或过低都会导致电极极化面电阻的增加,当电极的烧结温度适中时,电极表面粒子有一定的烧结连接,并且有一定的多孔结构,电极的极化面电阻达到最小值。

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