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   红外光谱电化学 的翻译结果: 查询用时:0.016秒
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红外光谱电化学
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  infrared spectroelectrochemistry
     In-situ Microscopic Fourier Transform Infrared Spectroelectrochemistry of Redox Mechanism for Electroactive Species in Polyelectrolyte
     聚电解质中电活性物质氧化还原反应机理的现场显微红外光谱电化学研究
短句来源
     In-situ Fourier Transform Infrared Spectroelectrochemistry as a Probe of the Glassy Carbon Electrode Chemically Modified by Nickel (Ⅱ)-Cyanometallates
     六氰亚铁酸镍修饰玻碳电极的现场红外光谱电化学研究
短句来源
     In Situ Study on the Redox of p-methylaminophenol on Platinum Electrode with Infrared Spectroelectrochemistry
     对-甲氨基苯酚在Pt电极上电氧化还原过程的现场红外光谱电化学研究
短句来源
     Infrared spectroelectrochemistry can characterize an electrochemical process at the molecular level by acquiring real time information about molecular structure of related species.
     红外光谱电化学技术可在分子水平上现场表征电化学过程。 获得电化学过程中电氧化还原物种的结构变化信息。
短句来源
  ftir spectroelectrochemistry
     In Situ Microscopic FTIR Spectroelectrochemistry Study of Oxidation of L Ascorbic Acid in Polymer Electrolyte(PEG/LiClO 4)
     聚合物电解质(PEG/LiClO_4)中L-抗坏血酸氧化的现场显微红外光谱电化学研究
短句来源
     Study on S-benzyl-N-(ferrocenyl-1-methyl-metylidene)-Dithiocarbazate Nickel(Ⅱ)/Cobalt(Ⅱ) Complexes by In-situ FTIR Spectroelectrochemistry
     乙酰二茂铁缩肼基硫代甲酸苄酯镍/钴配合物现场红外光谱电化学研究
短句来源
     Meanwhile, the electrochemical oxidation of melatonin in acetonitrile solution was studied by cyclic voltammetry, differential pulse voltammetry and in-situ FTIR spectroelectrochemistry.
     首次运用现场红外光谱电化学法并结合循环伏安法和差分脉冲法对褪黑素在有机溶剂乙睛中的电化学氧. 化机理进行了研究,并提出了反应机理。
短句来源
     The method, the experimental technique and applications of in-situ FTIR spectroelectrochemistry (FTIRs) were reviewed firstly in this paper.
     本论文首先综述了现场红外光谱电化学的方法、实验技术以及研究现状及其进展。
短句来源
     The paper reports the cyclic voltammetry and in situ FTIR spectroelectrochemistry of electrochemically prepared prussian blue and prussian blue-nickel hexacyanoferrate mixtue modified platinum electrodes (PB|Pt and PB NiHCF|Pt). It is found that the reduction rections of PB structure on these two films can be significanty inhibited, however less effect to the NiHCF structure.
     报道电化学方法制备的普鲁士蓝|铂修饰电极(PB|Pt)和PB-六氰亚铁酸镍混合物膜|铂修饰电极(PB-NiHCF|Pt)的循环伏安和现场付立叶红外光谱电化学研究,发现不论PB膜还是PB-NCF混合物膜经过脱水处理后,两膜中的PB的电化学还原反应受到了显著的抑制,而对NCFCF结构的影响较小.
短句来源
  “红外光谱电化学”译为未确定词的双语例句
     In the spectra of in-situ FTIR spectroelectrochemical evaluation for cell in aqueous K 4Fe(CN) 6 solution, the negative-going CN peak of Fe(CN) 3- 6 and the positive-going CN peak of Fe(CN) 4- 6 were observed clearly during the oxidation process, in accordance with that reported in literatures.
     以亚铁氰化钾水溶液进行现场红外光谱电化学表征 ,氧化过程的谱图中能清楚地观察到 ,Fe(CN) 4 -6中 CN 的正向吸收峰与Fe(CN) 3 -6中 CN 的负向吸收峰 ,结果与文献报道一致。
短句来源
     The reduction process of K3Fe(CN)6 on a Pt electrode in polymer media has been investigated by using in-situ microscopic FTIR spectroscopy technique. MClO4(M=Li+, Na+, K+, TBA+) was used as the supporting electrolyte. Spectroelectrochemical behavior of Fe(CN)3-/ 4-6 was different from that in aqueous solution.
     采用原位显微红外光谱电化学方法研究了聚电解质中不同阳离子(Li+,Na+,K+和TBA+)存在下铁氰化钾的电化学还原过程.观察到支持电解质阳离子对Fe(CN)3-/4-6振动频率的影响,探讨了还原反应机理
短句来源
     The electrochemical reaction mechanism of Vitamin K3 on platinum electrode in weak alkaline aqueous solution has been studied by cyclic voltammetry and in situ FTIR\|Spectroelectrochemistry.
     用循环伏安法及现场红外光谱电化学法研究了维生素K3在铂电极上,弱碱性水溶液介质中的电化学反应机理。
短句来源
     Cyclic Voltammetric and in Situ Fourier Transform Infrared Spectroelectrochemical Studies on the Reaction of Cd~(2+) on the Plussian Blue/Platinum Modified Electrode
     循环伏安和现场红外光谱电化学研究镉(Ⅱ)在普鲁士蓝/铂修饰电极上的反应
短句来源
     2, Electrochemical redox process of catechol and hydroquinone in acetonitrile solution v/ere studied.
     2,运用循环伏安法和现场红外光谱电化学法研究了邻苯二酚和对苯二酚在有机溶剂乙腈中电化学氧化还原过程的机理。
短句来源
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  infrared spectroelectrochemistry
Recent developments in infrared spectroelectrochemistry
      
  ftir spectroelectrochemistry
The kinetics of the activation and anaerobic inactivation processes of Desulfovibrio gigas hydrogenase have been measured in D2O by FTIR spectroelectrochemistry.
      


A Teflon bridge/edge-eliminator is designed to connect a glass container and a light-transparent gold-minigrid NaCl thin-layer cell to form a vertically configured in-situ FTIR spectroelectrochemical cell. The bridge/edge-eliminator sets an internal reference point for accurate potential control. The size of the thin-layer chamber is 5×5×0.11mm. A 1900 Ω formal resistance of the thin-layer cell was measured in CH_2Cl_2/0.1 M TBAP solution. Well defined thin-layer cyclic voltammograms and IR specctral changes...

A Teflon bridge/edge-eliminator is designed to connect a glass container and a light-transparent gold-minigrid NaCl thin-layer cell to form a vertically configured in-situ FTIR spectroelectrochemical cell. The bridge/edge-eliminator sets an internal reference point for accurate potential control. The size of the thin-layer chamber is 5×5×0.11mm. A 1900 Ω formal resistance of the thin-layer cell was measured in CH_2Cl_2/0.1 M TBAP solution. Well defined thin-layer cyclic voltammograms and IR specctral changes for ferrocene oxidation were obtained.

本文报告一种新式的光透式金网电极薄层红外光谱电化学池设计。该设计使用聚四氟乙烯池内盐桥/边际限制器,连接直立式玻璃池体与氯化钠红外薄层池,设置薄层池内的电位参比点,既便于监控操作,又能得到良好的光谱电化学响应。以二茂铁在二氯甲烷中的行为进行了表征。

Alkyl tetrapyrazine prophyrazine cobalt complexes(R_4TPTAPCo,R= C_5H_(11),C_8H_(17),C_(12)H_(25),C_(16)H_(33))were synthysized.Their IR and UV/Vis spectra, electrochemical properties,thermal stability were studied.The results showed the crystall form change and“spectral contraction”in all the complexes.

合成了烷基化四吡啶并紫菜嗪钴配合物(R_4TPTAPCo,R=C_5H_(11),C_8H_(17),C_(12)H_(25),C_(16)H_(33)),并对配合物的紫外可见光谱、红外光谱、电化学性质及热稳定性进行了研究.结果表明,上述化合物均产生晶型转变和“光谱紧缩”.

A novel transmittance infrared (IR) spectroelectrochemical cell is reported. Gold minigrid is used for the working electrode. Only 30 μm IR light path-length is obtained. Internal reference point setting is achieved by using mechanical processing of IR crystal light window. Excellent electrochemical behaviour and spectroscopic responses are characterized by ferrocene redox reaction in CH2Cl2 solution.

本文报道一种新型透射式红外光谱电化学池的设计制作。应用盐片加工技术,采用内参比点设置等方法。使该池达到30μm的厚度,且具有十分良好的电化学性能。

 
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