Abstract:
전기삼투펌프로서, 상기 전기삼투펌프는, 유체의 이동을 허용하는 멤브레인; 및 상기 멤브레인의 양측에 각각 마련되고, 유체의 이동을 허용하도록 다공성 재질 또는 구조로 형성되는 제1 전극 및 제2 전극을 포함하되, 상기 제1 전극 및 상기 제2 전극은 음이온 고분자가 혼입된 전도성 고분자를 포함하고, 상기 제1 전극 및 상기 제2 전극의 전기화학 반응은 양이온이 이동됨으로써 일어날 수 있다.
Abstract:
The present invention relates to an amalgam electrode, a manufacturing method of the same, and an electrochemical reduction method of carbon dioxide using the same. The amalgam electrode is for reducing carbon dioxide, and contains dental amalgam obtained b mixing mercury and amalgam powder. The dental amalgam contains 35-55 parts by weight of Hg, 14-34 parts by weight of Ag, 7-17 parts by weight of Sn, and 4-24 parts by weight of Cu.
Abstract:
PURPOSE: A metalorganic/ polymer composite, a manufacturing method thereof and a catalyst for deoxidization of carbon dioxide including the metalorganic/ polymer composite are provided to easily deoxidize carbon dioxide by using the metalorganic/ polymer composite with an organometallic compound bonded to a hydrophilic polymer by the pyridine linker as an electrochemical catalyst. CONSTITUTION: A metalorganic polymer composite includes an organometallic compound bonded to a hydrophilic polymer by the pyridine linker. The hydrophilic polymer comprises a polyallylamine group or a polyvinyl pyridine group polymer. A manufacturing method of the metalorganic / polymer composite comprises the steps of: reacting organometallic compound and 4-pyridine carbox aldehyde in a solvent to synthesize metalorganic-pyridine carbox aldehyde compound and reacting the organometallic-pyridine carbox aldehyde compound with the hydrophilic polymer to synthesize the metalorganic/ polymer composite bonded to the hydrophilic polymer by the pyridine linker.
Abstract:
PURPOSE: A high efficiency oxidation-reduction active electrode is provided to show excellent stability, and to use as oxidation-reduction platform of electrochemical reaction by its own electrochemical characteristic. CONSTITUTION: An oxidation-reduction active electrode comprises: an electrode, and a membrane formed on the surface of the electrode, comprising: an ion-exchange resin reformed as an oxidation-reduction intermediary which has a sulfone radical on the branched chain; and a hydrophilic polyurethane. A manufacturing method of the oxidation-reduction active electrode comprises the steps of: sintering the ion-exchange resin with the oxidation-reduction intermediary; and forming the hydrophilic polyurethane membrane containing the reformed ion-exchange resin on the surface of the electrode. The ion-exchange resin is perfluorinated cation exchange resin equipped with a channel structure, in which the ion-exchange reaction occurs by the sulfone radical positioned on the inner wall of the channel.