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Oxygen electrode is one of the important components in metal-air cell. The main effect factors on performance of oxygen electrode are catalysts′ oxidation and deoxidization capability and structure of oxygen electrode.

氧电极是金属空气电池的重要组成之一,影响氧电极性能的主要因素是催化剂的氧化还原性能和氧电极结构。

A calculation method of standard electrode potentials in the complex system of the aqueous solution was derived in this paper.

推导了水溶液中复杂体系的标准电极电位计算公式,用此公式计算了目前国际上使用的一些标准电极电位,并对现有标准电极电位的数据作了分析。

A gold electrode modified by thionine covalently bound to self-assembled cysteamine monolayer has been prepared. The Th-SAM modified electrode is electroactive and exhibits two redox couples which formal potentials are more positive than that of thionine in bulk solution.

在电极表面进行化学修饰,将具功能性的分子、离子或聚合膜固定在电极表面,使电极具有某种特定的化学和电化学性质,是目前电化学和电分析化学研究中最活跃的领域之一。

One is the interstitial water or zeolitic water, it corresponds to the broad absorptive band at around 3498 cm〓 that results from the association of water owing to the H-bonding. 2 The other is the water coordinated to lanthanum, corresponding to the very strong sharp peak at 3607cm〓, The peaks at around 1600cm〓 were assigned to the bending vibrations of water in LaHCF, two sharp peaks were found at 1601cm〓 and 1624cm〓 respectively, which correspond to two bending vibrations of the interstitial water and the coordinated water respectively in the structure of LaHCF.

通过电化学扫描法,得到了一种有电活性的稀土元素化学修饰电极—铁氰化镧修饰电极;并用循环伏安法进行了表征,比较了碱金属离子Li〓,Na〓,K〓,Rb〓,Cs〓和H〓在膜中的通透性,结果表明氢离子能透过铁氰化镧膜而碱金属离子则不能透过铁氰化镧膜;稳定性研究表明,该修饰电极在纯1.0mol/L HCl溶液中扫描,峰电流迅速下降,到第10圈时峰电流几乎为零,而在混合溶液1.0mol/L KCl+0.10mol/L HCl。

The results show that CZT wafer with the mechanical polishing treatment was easier to achieve the ultrasonic wire bonding between the Au electrode of CZT and the down-lead. Moreover, the weldbility between the CZT electrode thickness and the down-lead shows a kind of parabola relationship.

研究结果表明,经机械抛光表面处理的CdZnTe晶片,其金电极与外引线间容易实现超声焊接;CdZnTe电极厚度与引线焊合率之间呈抛物线关系,获得最佳焊接质量的电极厚度为180nm左右。

A new kind of gas diffusion electrode- flaky and vertical gas diffusion electrode was introduced in this paper.

介绍了一种新型气体扩散电极———片状立式气体扩散电极三相界面的工作原理和优点,这种片状电极可用于气体参与反应的金属-空气电池和燃料电池。

A pair of redox peak of Eu~(3+) of the concentration of 1×10~(-4) mol/L appeared on both bare pyrolytic graphite electrode and bare glassy carbon electrode in HAc-NaAc 0.2 mol/L pH 6.0 buffer, and controlled by the diffusion current. There was also a good reversible redox peak of Eu~(3+) of the concentration of 1×10~(-3) mol/L on bare pyrolytic graphite electrode in Heps 0.01 mol/L pH7.4 and in the charge of diffusion current.

当底液为0.2mol/L pH6.0的HAc-NaAc缓冲溶液、Eu~(3+)浓度为1.0×10~(-4)mol/L时,在裸热解石墨电极与裸玻碳电极上均有一对氧化还原峰,且受扩散电流控制;当底液为0.01mol/L pH7.4 Hepes缓冲溶液、Eu~(3+)浓度为1.0×10~(-3)mol/L时,在裸热解石墨电极上出现一对可逆性非常好的氧化还原峰,同样受扩散电流控制。

A novel lead ionselective polyvinyl chloride membrane electrode was prepared using 25,27di(2thiadiazolethiooxyethyl)26,28dihydroxyl5,11,17,23tetraptertbutylcalix[4]arene as the ionophore. The influences of the nature of plasticizers and the amounts of the incorporated ionophore and ionic additive on the response characteristics of the electrode were studied.

制备了以25,27二(2噻二唑基硫代乙氧基)26,28二羟基5,11,17,23四叔丁基杯\[4\]芳烃为载体的聚氯乙烯膜铅离子选择电极;研究了电极膜中增塑剂种类及载体和离子定域体含量对电极性能的影响。

The three patches of receptive field existed a few overlapping areas and also had separate area. When the intensity of mechanical stimulation was controlled to evoke only one T cell excited, the simultaneous intracellular recordings with four microelectrodes (one in AP cell and the other three in three T cells respectively) could shown that under natural conditions AP cells can positionally discriminate the area of the mechanical stimulation on a single annulus with the postsynaptic potential.

将机械刺激强度控制在只激活一个T细胞时,利用四根胞内微电极同时记录(三根电极在三个T细胞内,第四根电极在AP细胞内),结果表明AP细胞在自然条件下对单个体环上的机械刺激区域确实具有突触后电位的部位分辨功能。

On the basis of the previous research work of our lab, the PAMAM/HA composition coatings have been deposited on the electrodes by continuous potential step method, to study the electrochemical behaviors of the biological molecule such as cytochrome c, glucoseoxidase, haemachrome.

本文在实验室已有的对HA电沉积研究的基础上,应用双电位阶跃法在铂电极和玻碳电极上电沉积制备羟基磷灰石涂层,考察细胞色素C、葡萄糖氧化酶、血红蛋白等生物大分子在HA修饰电极上的电化学行为。

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他将怎样告诉朱迪丝和孩子们呢?

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