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硝酸根电化学还原去除过程阴极电位振荡研究
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作者 胡玲 吴燕翔 +5 位作者 舒建成 陈绍勤 赵志胜 唐金晶 刘作华 陈梦君 《中国环境科学》 EI CAS CSCD 北大核心 2022年第6期2662-2670,共9页
硝酸根在电化学还原去除过程中存在多价态变化行为,该过程是一个典型的远离平衡态的非线性体系.为探明硝酸根在去除过程中发生的电化学行为,研究了H_(2)SO_(4)浓度、电流、反应温度及NO_(3)^(-)浓度对阴极电位振荡的影响规律.采用循环... 硝酸根在电化学还原去除过程中存在多价态变化行为,该过程是一个典型的远离平衡态的非线性体系.为探明硝酸根在去除过程中发生的电化学行为,研究了H_(2)SO_(4)浓度、电流、反应温度及NO_(3)^(-)浓度对阴极电位振荡的影响规律.采用循环伏安法、XRD、SEM-EDS及XPS表征方法,分析了反应体系循环伏安特性,以及反应前后阴极Cu表面的物相组成、微观形貌、表面电子价态等变化规律.研究结果表明,在恒流条件下(Pt作为阳极、Cu作为阴极),H_(2)SO_(4)-NaNO_(3)体系发生了明显的电位振荡;当H_(2)SO_(4)浓度为0.10mol/L,电流为12mA,温度为20℃,NaNO_(3)浓度为0.20mol/L最佳电位振荡条件下,振荡平均振幅为1.15V,振荡平均周期为3s.另外,硝酸根在电化学还原去除过程产生的周期性电位振荡主要原因是阴极Cu表面生成的致密CuO薄膜不断溶解和形成,以及阴极表面H_(2)的周期性产生与消失. 展开更多
关键词 硝酸根去除 电化学还原 非线性 电位振荡 阴极铜电极
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A rapid one-step electrodeposition process for fabrication of superhydrobic surfaces on anode and cathode 被引量:3
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作者 郝丽梅 闫小乐 +2 位作者 解忧 张涛 陈志 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第7期1576-1583,共8页
This work presents a method to solve the weak solubility of zinc chloride(ZnCl_2) in the ethanol by adding some reasonable water into an ethanol electrolyte containing ZnCl_2 and myristic acid(CH_3(CH_2)_(12)COOH).A r... This work presents a method to solve the weak solubility of zinc chloride(ZnCl_2) in the ethanol by adding some reasonable water into an ethanol electrolyte containing ZnCl_2 and myristic acid(CH_3(CH_2)_(12)COOH).A rapid one-step electrodeposition process was developed to fabricate anodic(2.5 min) and cathodic(40 s) superhydrophobic surfaces of copper substrate(contact angle more than 150°) in an aqueous ethanol electrolyte.Morphology,composition,chemical structure and superhydrophobicity of these superhydrophobic surfaces were investigated by SEM,FTIR,XRD,and contact angle measurement,respectively.The results indicate that water ratio of the electrolyte can reduce the required deposition time,superhydrophobic surface needs over 30 min with anhydrous electrolyte,while it needs only 2.5 min with electrolyte including 10 mL water,and the maximum contact angle of anodic surface is 166° and that of the cathodic surface is 168°.Two copper electrode surfaces have different reactions in the process of electrodeposition time,and the anodic copper surface covers copper myristate(Cu[CH_3(CH_2)_(12)COO]_2) and cupric chloride(CuCl);while,zinc myristate(Zn[CH_3(CH_2)_(12)COO]_2) and pure zinc(Zn) appear on the cathodic surface. 展开更多
关键词 one-step electrodeposition process SUPERHYDROPHOBICITY contact angle AQUEOUS ANODE CATHODE
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