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A ROLE FOR ELECTROSPRAY MASS SPECTROMETRY IN ELECTROCHEMICAL STUDIES

机译:电化学质谱法在电化学研究中的作用

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The advantages of coupling bulk electrolysis with electrospray mass spectrometry (ESMS) are demonstrated using the oxidative electrolyses of copper, nickel, and cobalt diethyldithiocarbamates (Cu(Et(2)dtc)(2), Ni(Et(2)dtc)(2), and Co(Et(2)dtc)(3)). Both on-line and off-line methods have been developed to detect the charged species formed in the oxidation processes ([Cu(Et(2)dtc)(2)](+), [Ni(Et(2)dtc)(3)](+), and [Co-2(Et(2)dtc)(5)](+), respectively) using common electrochemical solvents and electrolyte (acetonitrile, dichloromethane, and tetrabutylammonium hexafluorophosphate (BU4NPF6)). In the off-line mode, conditions are established for electrolyses of solutions containing equimolar (2 mM) electroactive compound and electrolyte. Following dilution, an excellent signal-to-noise ratio is obtained for the ES mass spectrum of the electrolysis product. On-line electrolysis with ESMS detection of charged solution-soluble products is achieved using a simple now cell constructed from two lengths of Pt microtubing. The outlet of the cell is connected directly to the fused silica capillary of the spectrometer, and after electrolysis of an acetonitrile solution containing 0.2 mM electroactive compound and 0.2 mM Bu(4)NPF(6), the product is detected with high sensitivity. The methods should be readily applied to most other common electrochemical solvents and electrolytes.
机译:铜,镍和二乙基二硫代氨基甲酸钴(Cu(Et(2)dtc)(2),Ni(Et(2)dtc)(2)的氧化电解显示了将本体电解与电喷雾质谱(ESMS)耦合的优势)和Co(Et(2)dtc)(3))。在线和离线方法都已经开发出来,可以检测在氧化过程中形成的带电物质([Cu(Et(2)dtc)(2)](+),[Ni(Et(2)dtc)( 3)](+)和[Co-2(Et(2)dtc)(5)](+),分别使用常见的电化学溶剂和电解质(乙腈,二氯甲烷和六氟磷酸四丁基铵(BU4NPF6))。在离线模式下,可以为含有等摩尔(2 mM)电活性化合物和电解质的溶液进行电解创造条件。稀释后,对于电解产物的ES质谱,获得了极好的信噪比。使用由两个长度的Pt微管构成的简单的now细胞,可以通过ESMS在线电解检测带电的溶液可溶产物。池的出口直接连接到光谱仪的熔融石英毛细管上,并且在电解含有0.2 mM电活性化合物和0.2 mM Bu(4)NPF(6)的乙腈溶液后,可以高灵敏度检测产物。该方法应易于应用于大多数其他常见的电化学溶剂和电解质。

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