通过分别以催化剂层和纳米颗粒层分别作为底部电极和顶部电极,研究人员成功地设计了一个气体传感器并测试了其传感性能。
By employing the catalyst and nanoparticle layers as bottom and top electrodes respectively, the researchers successfully designed and tested a gas sensor.
利用计时电流法对不同光照时间纳米银颗粒组装的酶电极响应电流进行了表征。
The response current of the enzyme electrode containing AgNPs photo-induced at different time was characterized by chronoamperometry.
电池和模拟电极研究均表明,大颗粒硫酸铅晶体比小颗粒晶体更难还原。
The measurements of both battery and simulated electrode indicate that the large crystals are more difficult to be reduced than the small ones.
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