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Because RFCA in a bipoiar fashion can enlarge lesion surface area without increasing the depth, and its particular lesion distributions involved the electrode/tissue interface and the part between the two adjacent electrodes, there is much opportunity to hit the target in bipolar fashion so long as the orientation of the pathway or the any part of reentant circle is not parallel to the electrode-connecting line, whatever at any angle.

因为双极消融法比常规单极消融法有更大的消融面积但不增加深度,而且其组织损伤分布于两电极与组织的交界面和两电极之间区域,所以只要旁道或折返环路的任何部位的走向与两电极的连线不相平行,在任何夹角下双极消融均比单极消融有更多的击中机会。

Consequently, the improvement of cycle life is described as the partial substitution of Zr for Mg in the alloy.

XRD结构分析表明:主相仍为Mg↓2Ni; Zr替代Mg使合金的微晶结构发生了改变,趋于非晶化;添加Zr的合金的容量比由扩散法合成的合金的容量有所提高;合金中添加Zr,提高了电极的放电容量,增大了放电平台;特别是Zr 对六方晶系Mg2Ni合金结构中Mg的部分取代大幅度提高了电极的循环寿命,未经任何处理的 Mg1.4Zr0.6Ni合金电极经25个循环后,放电容量仅衰减4.11%,表明添加Zr对提高合金的循环寿命具有重要的作用。

The present invention is process of separating and assembling metallic single wall carbon nanotube and semiconductive single wall carbon nanotube synchronously. The process includes the following steps: photoetching silica substrate to prepare Au electrode, cutting intervals in the electrode with focused ion beam, soaking the electrode in DMF solution of single wall carbon nanotube, and applying electric field of 2-8 V magnitude and 1-10 Hz frequency.

本发明的目的在于提供一种金属性和半导体性单壁碳纳米管的同步分离与组装方法,该金属性和半导体性单壁碳纳米管的同步分离与组装方法包括如下步骤:通过常规光刻在含二氧化硅的衬底上制备金电极的步骤;利用聚焦离子束在电极上刻出若干个间隙的步骤;将上述电极浸入到单壁碳纳米管的DMF溶液的步骤;施加大小为2~8V、频率为1~10Hz的电场的步骤。

Moreover, by the research on the electrochemical performances of two cathode catalysts such as Pt and composite NiO, it is shown that (1) composite NiO is of lower over-potential and better electrochemical performance; and (2) the poor electrical conductivity of composite electrodes can be overcome by admixing Ag powder into the catalyst layer with a dosage of 10% by weight.

文中还研究了两种阴极催化剂Pt与复合NiO催化剂的电化学性能,发现复合NiO催化剂比Pt电极具有更低的过电位和更好的电化学性能;虽然复合电极的导电性比Pt差些,但是这一问题可以通过在电极中掺杂10%的Ag粉解决。

Upon the basis of the design of the electrode for blisk EDM finishing,the searching of an interference-free path for feeding an electrode through twist channels of a rimed blisk is carried out, in which the ker-nel problem is the determination of the electrode kinematic constraints.

在涡轮叶盘EDM精加工中电极的设计的基础上,进行了电极在带冠叶盘弯扭狭窄通道中无干涉进给轨迹的搜索,其中的核心问题是电极运动约束条件的确定。

Different discharge performance of the same gas electrode in the same zinc-air battery caused by the different electrode laying style was given.

通过对比相同的空气电极在同样的锌空气电池系统中采用不同摆放方式后产生的不同的放电特性,分析了空气电极的摆放方式对电极性能的影响。

It has been proved that surface confined quinones can greatly impove the electrocatalytic activity for ORR.

本论文中研究的氨基蒽醌聚合物修饰电极,与其它方法得到的醌类修饰电极比较,具有性质稳定、制备过程简单、活性点位浓度高等优点,而且同时具有类似聚苯胺的长链结构和蒽醌官能团的特性,为制备具有高氧还原催化活性的蒽醌修饰电极的研究提供了新的思路。

Poly-aminoanthraquinone modified electrode is more stable, more easily prepared, and can provide higher surface concentration of reactive sites compared with other quinones modified electrode by adsorpsion or doping.

本论文中研究的氨基蒽醌聚合物修饰电极,与其它方法得到的醌类修饰电极比较,具有性质稳定、制备过程简单、活性点位浓度高等优点,而且同时具有类似聚苯胺的长链结构和蒽醌官能团的特性,为制备具有高氧还原催化活性的蒽醌修饰电极的研究提供了新的思路。

The result of XPS showed that a large amount of inactive iodine absorbed on the surface of the reused electrode, and Pt and Pt resulted from the thermal-sealing process led to the decrease of the catalytic activity of the platinized catalytic electrodes.

结果表明二次利用电极表面吸附的大量非活性的碘和加热密封过程中电极表面生成的低催化活性的Pt和Pt,是使电极的活性下降的主要原因。

The titrant is a mixture of EDTA and sodium fluoride, both mercury film electrode and fluorinion selective electrode are inserted in the titration solution. In a process of titration, both the added volume of titrant and the concentration of mercury ion at each titration point can be obtained simultaneously from the potentials of two electrodes, and then the concentration of each component in the alloy can be obtained from the titration curves by multivariate calibration.

用ED-TA与氟化钠的混合溶液作为滴定剂,被滴定液中同时插入了汞膜电极和氟离子选择电极,在滴定过程中的任一滴定点,溶液中汞离子的浓度和滴定剂的加入体积可由两个电极的电位测定值同时获得,从而可应用多元校正法由相应的滴定曲线求得混合金属中每一种组分的含量。

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