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Chemically modified electrode has been widely used in electrogenerated chemiluminescence in the past several decades.

在过去的十几年中,化学修饰电极被广泛的应用于电致化学发光分析中,但是,纳米修饰电极在电致化学发光中的应用刚刚起步,许多体系在该类电极上的电致发光现象还没有得到研究。

Each of the converting elements generates signal charge. K transfer electrodes (k is a positive integer more than 1) are provided for each of the photoelectric converting elements in the column direction. 2k signal lines are connected to the transfer electrodes for adjacent two of said photoelectric converting elements. The 2k signal lines are used to supply driving clock signals to the transfer electrodes for the adjacent two photoelectric converting elements, respectively.

每一个转换单元用于产生信号电荷。K个传输电极(K是大于1的正整数),被提供来用于在行方向中的光电转换单元的每一个。2K条信号线,接到该传输电极,以便邻接两个该光电转换单元,并且用于把驱动时钟信号分别地提供到用于两个相邻的光电转换单元传输电极。

The influence of HTABr on s-BLMs was investigated by cyclic voltammetry and electrochemical impedance spectroscopy. The experimental results show that the HTABr appeared to be an effective ion carrier to facilitate the transmembrane transportation of ferrocyanide/ferricyanide.

而且,我们发现,在一定程度内(即表面活性剂的浓度低于Csol,或反应的时间比较短),若将电极取出放入到KC1支持液中,磷脂分子在电极表面可以重新自组装,s-BLM重新恢复到原来的状态,探针分子在电极上的响应电流也逐渐变弱,直到完全消失。

We proposed a new p-contact scheme using Ti and ITO transparent overcoating on the regular p-contact of the proton-implanted VCSEL and obtain substantial improvement in the kink characteristics and the modulation response of the proton-implanted VCSEL shows a more open clear eye and lower jitter of 35 ps operating at 2.125 Gb/s under 10 mA bias and 9 dB extinction ratio compared to the device without overcoated.

我们提出使用新的p型电极组合,利用Ti和透明电极蒸镀在一般的p型电极上,成功的改善了质子布植的面射型雷射之kink现象,且元件亦能成功的操作在2.125 Gb/s。

1 A mediator modified carbon glassy electrode (NMP-GC electrode) is made by immobilizing N-methyl phenazine sulfate as the mediator on the surfase of carbon glassy electrode, which successfully catalyzes the oxidation of NADH and reduce the over-potential of NADH almost 700mv.

采用N-甲基吩嗪硫酸酯作为氧化还原介体,制作了NMP修饰的玻碳电极,将该电极用于NADH的电催化,实现了NADH在NMP-GC上的可逆氧化还原,并且将NADH在电极上的过电位降低了700mv左右。

The oxidation of diethyl stilbestrol was dependent on adsorption controlling process at MWNT /graphit modified electrode. The transmitted electron number, 2, was calculated by LAVIRON formula. By the linear relationship of peak potential and pH, it can be inferred that the transmitted number of electron and proton were equal.

己烯雌酚在MWNT/石墨修饰电极上的氧化过程靠吸附控制;由峰电位Ep与溶液pH存在的线性关系求出参与电极反应的质子数与电子数相等,由LAVIRON公式求解出参与电极反应的电子数为2。

The research indicated that the main electric particles forming guiding discharge channel were the electrons released from the process of the breaking up of the negative ions. During 10 microseconds after the laser pulse, the electrode also could guide discharge effectively; and it suggested the new conception of the electrode erosion, and developed new-type running disk electrode, which could discharge for a million times in atmosphere. It also suggested methods of the texturing roller of besmearing with oil film and cathodal discharge in processing. The research of the texturing roller indicated that roughness of 14 microns and the intensified depth of over 200 microns could be got.

研究表明:形成诱导放电通道的带电粒子主要是负离子解离过程释放的电子,在激光脉冲结束后10微秒内,电极都能有效诱导放电;提出了电极损耗的新概念,并研制了新型转动圆盘电极,可在大气中完成上百万次放电,提出了加工过程中负极性放电、工件表面涂介质薄膜放电的毛化工艺方法;并用之对轧辊试件进行了毛化工艺研究,毛化粗糙度可达14微米,强化深度大于200微米。

Electrochemical capacitor is composed of electric double-layer capacitor and faradaic pseudocapacitor.

电极材料是影响电化学电容器性能的主要因素之一,应用于双电层电容器的电极活性物质主要是各种碳材料,如各种活性炭、热裂解碳、碳纤维、碳纳米管等,考虑到合成工艺和成本因素,我们采用热裂解碳为双电层电容器的电极材料,并研究了它们的电化学性能。

On the basis of ascertaining that phosphomolybdic acid modified platinum electrode has higher catalytic activity to methanol oxidation , three kinds of transition metal substituted phosphomolybdic acids were synthesized, and the IR spectrum indicated that the compounds still kept Keggin structure.

在证实了磷钼酸修饰铂电极对甲醇氧化具有较高活性的基础上,合成了3种过渡金属取代的磷钼酸,通过红外光谱测试仍为Keggin结构,并制备了过渡金属取代磷钼酸修饰铂电极,研究了修饰铂电极在硫酸溶液中的电化学行为及对甲醇的催化氧化作用。

The concentration of NO and NO2 increases with increasing of frequency and increasing of the distance between electrodes. Electrode polarity unconspicuously affects the concentration of NO and NO2. The distance between electrodes considerably affects radio of NO2 /.

结果发现:放电频率、电极间距对NO 和NO2的浓度影响显著, NO 和NO2浓度随放电频率和放电间距的提高而增加,电极极性对NO 和NO2浓度的影响不明显,电极间距对 NO2 /的比值影响明显。

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