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用於絲網印刷電極的電池

CELLS FOR SCREEN-PRINTED ELECTRODES

【Redox.me】電化學周邊耗材

絲網印刷電極支架

絲網印刷電極支架 / SCREEN-PRINTED ELECTRODE HOLDER - SPE W: 7-10.2 MM, H: 0.05-0.7 MM, L>20 MM

H-A-SPE_HOLD, H-O-SPE_HOLD

The Screen-Printed Electrode (SPE) Holder is a versatile tool designed to facilitate characterization of thin/thick film planar electrodes and electrochemical (bio)sensors. It enables experiments with nearly all available on the market screen-printed electrodes (please see compatibility table below).

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SPE 支架的液流電池附件

SPE 支架的液流電池附件 / FLOW CELL ATTACHMENT FOR SPE HOLDER

H-A-FC_SPE, H-O-FC_SPE, H-A-FC_SPE+HOLD, H-O-FC_SPE+HOLD

Flow cell attachment increases the functionality of the Screen-Printed Electrode (SPE) Holder and makes the SPEs operating under flow conditions. The assembled set consisting of Screen-Printed Electrode Holder, Flow Cell Attachment and the reservoir is gas- and liquid-tight.

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用於 SPE 支架的 SPECTRO-EFC 電池附件

用於 SPE 支架的 SPECTRO-EFC 電池附件 / SPECTRO-EFC CELL ATTACHMENT FOR SPE HOLDER, UV-VIS-NIR

H-A-SPEC_EFC_SPE, H-O-SPEC_EFC_SPE, H-A-SPEC_EFC_SPE+HOLD, H-O-SPEC_EFC_SPE+HOLD

This is a multi-purpose Spectro-EFC Cell Attachment designed to be coupled with a light source and spectrometer (UV-vis-NIR) via bifurcated optical fiber. It enables obtaining electrochemical and spectroscopic information from the Screen-Printed Electrodes (SPE), where variations in the applied potential to working electrode induce changes in the observed reflection spectrum.

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用於 SPE 支架的拉曼 EC 液流電池附件

用於 SPE 支架的拉曼 EC 液流電池附件 / RAMAN EC FLOW CELL ATTACHMENT FOR SPE HOLDER

H-A-RAM_SPE, H-O-RAM_SPE, H-A-RAM_SPE+HOLD, H-O-RAM_SPE+HOLD

This setup combines two classical analytical techniques such as electrochemistry using Screen-Printed Electrodes and Raman spectroscopy, to obtain in-situ chemical information about the reactions taking place during an electrochemical experiment. During an experiment Raman laser is focused onto the surface of a thin film working electrode through a transparent Sapphire (or quartz) window and thin layer of electrolyte (total optical path of 3 mm). The electrolyte thickness of 2 mm ensures free diffusion of ions (e.g. protons) and their counter ions.

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