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多通道Gamry多通道多功能電化學工作站
eQCM 10MGamry 電化學石英晶體微天平
Reference3000Gamry電化學工作站
Reference3000多功能電化學工作站
Gamry電化學工作站
Reference 600+Gamry電化學工作站
Gamry旋轉圓盤電極
Reference600+電化學工作站
Interface 1000Gamry電化學工作站
Interface 1000美國進口電化學工作站品牌
QCM-I高精度耗散型石英晶體微天平
IMPS/IMVSGamry太陽能電池測試用電化學工作站
Interface 1010Interface 1010電化學工作站
Interface 5000Gamry 電化學工作站
RDE710Gamry旋轉圓盤/旋轉環(huán)盤電極電化學測試系統(tǒng)
Gamry氧還原
發(fā)布時間:2017/4/7
點擊次數:1997
Electrochemical impedance spectroscopy (EIS) is a powerful technique that utilizes a small
amplitude, alternating current (AC) signal to probe the impedance characteristics of a cell.
The AC signal is scanned over a wide range of frequencies to generate an impedance
spectrum for the electrochemical cell under test. EIS differs from direct current (DC)
techniques in that it allows the study of capacitive, inductive, and diffusion processes taking
place in the electrochemical cell. The theory behind EIS is more complex than DC techniques,
so it’s advised to have a basic understanding of the underlying principles before beginning.
EIS has far reaching applications including coatings, batteries, fuel cells, photovoltaics,
sensors, and biochemistry. This guide will focus on the application of the EIS technique for
analyzing the corrosion performance of coated aluminum panel.
Knowledge of the electrochemical system being investigated is also useful before beginning.
With a basic understanding of the system it can be known if the potentiostat will be able to
gather the desired information, and if the data collected meets accuracy requirements.