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1)  multi-en-zyme electrode
复合酶电极
2)  compound electrode
复合电极
1.
Optimizing design of compound electrode structure parameter in electrical impedance tomography;
医学EIT复合电极结构参数优化设计
2.
The Cu/SnO2+Bi2O3/SeO2-V2O5 compound electrode is prepared using the electrodeposit and heat treatment method, and is used in the oxidation reaction of myrtenal and α-pinene to probe into the influence of density of electric current, reaction temperature, reaction time,concentration of KOH on the electrochemistry reaction of myrtenal.
用电沉积和热处理方法制备Cu/SnO2+Bi2O3/SeO2-V2O5复合电极,将该电极应用到α-蒎烯氧化合成桃金酿烯醛的反应中,探讨电流密度,反应温度,反应时间和KOH浓度对电化学合成桃金酿烯醛的影响。
3.
With resin carbon material as carrier,the third different types of platinum carbon compound electrodes were prepared by chemical adsorption reduction method,galvanization reduction method and ion sputter method.
以树脂碳为载体 ,用化学吸附还原法、电镀还原法和离子溅射法制备了 3种不同类型的铂碳复合电极 ,然后采用恒电位法测定了铂碳复合电极的阴极极化曲线 ,并以此为基础求出了这些铂碳复合电极的有关电化学参数。
3)  Composite electrode
复合电极
1.
Study of electrochemical catalytic behavior of hydrogen evolution on electrodeposited nickel-phosphorus-zirconium dioxide composite electrode;
电沉积Ni-P-ZrO_2复合电极析氢电催化性能的研究
2.
Performance of graphite powder-carbon black composite electrodes for the vanadium redox flow battery;
钒氧化还原液流电池石墨-炭黑复合电极性能
3.
In order to know the optimal measurement conditions and further to obtain more precise measurement results, the effects of some factors including water quality, buffer solution of different purity, the application of composite electrode, the concentration of NaOH solution etc.
探讨所用水质、不同纯度的缓冲溶液、复合电极的使用、NaOH溶液的浓度等条件对兰陵美酒中氨基酸态氮含量测定的影响,从而得出最佳测定条件,达到较为准确地测定氨基酸态氮的含量。
4)  composite electrodes
复合电极
1.
Study on fluoride ion removal from drinking water by electrosorption of composite electrodes;
复合电极电吸附去除水中氟离子的研究
2.
Amorphous hydrous ruthenium oxide/active carbon composite electrodes were prepared, which amorphous hydrous ruthenium oxide was formed by a sol-gel process.
用sol-gel法制备了水合二氧化钌,进而制备了二氧化钌/活性炭复合电极,并对各种不同配比的复合电极的电化学性能和物理性能进行了实验研究。
3.
The composite electrodes were characterized by X-ray diffraction(XRD)and scanning electron microscopy(SEM),the results showed that the electrodes materials have super-capacitor properties.
以二氧化钌和二氧化锰作为电极材料的活性物质,以活性碳粉末为电极的基础原料制备复合电极,并组装超级电容器单元,用 X 射线衍射仪和扫描电镜对电极材料进行表征, 可得复合电极具有明显的电容特征。
5)  Composite membrane electrode
复合膜电极
6)  antimony combination electrode
锑复合电极
补充资料:酶电极
      一种电化学传感器,属于敏化的离子选择性电极,是在离子选择性电极(包括气敏电极)的敏感膜表面覆盖一层很薄的含酶凝胶或悬浮液而制成的,有的电极外面还有一种渗析膜。
  
  1962年L.克拉克提出酶电极的原理,1969年G.G.吉尔伯特制成酶电极。80年代初,已用于测定尿素、葡萄糖、氨基酸、扁桃苷、青霉素、核苷酸、肌酸酐、胆甾醇、乙酰胆碱、谷酰胺、鸟嘌呤以及磷酸根、硫酸根、硝酸根等无机离子。
  
  测量时,样品中待测的底物向膜层表面扩散,在酶的催化作用下发生反应,生成物为离子选择性电极所响应,通过测定相应的电势即可求得样品中底物的浓度。以尿素电极为例,在尿素酶的催化作用下,尿素发生下列水解反应:
  
  
  生成的NH嬃用NH嬃-电极或氨气敏电极检出。
  
  酶电极的优点是选择性好,测量速度快,使用方便,不破坏样品,特别是能用于生物溶液和活体组织中某组分的连续监控,将在生化研究和临床检测等方面发挥重要作用。
  

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