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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >A spectroelectrochemical investigation of the interaction of diisobutyldithiophosphinate with copper, silver and gold surfaces: II. Electrochemistry and Raman spectroscopy
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A spectroelectrochemical investigation of the interaction of diisobutyldithiophosphinate with copper, silver and gold surfaces: II. Electrochemistry and Raman spectroscopy

机译:二异丁基二硫代次膦酸酯与铜,银和金表面相互作用的光谱电化学研究:II。电化学和拉曼光谱

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The interaction of the sulphide mineral flotation collector, diisobutyldithiophosphinate (DIBDTPI), with silver, copper, and gold surfaces has been investigated by voltammetry and Raman scattering spectroscopy. Voltammetry showed that DIBDTPI is oxidised to its disulphide on gold whereas the metal-collector compounds are formed on silver and copper. Surface enhanced Raman spectra (SERS) were observed for silver in the presence of DIBDTPI over a wide potential range and demonstrated that charge transfer chemisorption of the collector takes place. At high potentials, Raman spectra from AgDIBDTPI were also detected. No SERS spectra were evident with copper electrodes, but the formation of CuDIBDTPI was confirmed from Raman spectra. Similar results were observed with diethyldithiophosphate on copper, and this indicates that copper metal does not behave in the same manner as copper sulphide minerals with regard to interaction with thiophosphate collectors. At high potentials on gold, Raman spectra were observed from the disulphide and AuDIBDTPI. SERS spectra were also found on gold under laser illumination that were characteristic of the development of layer of sulfur and this is explained in terms of photolysis of DIBDTPI radicals formed as intermediates in the oxidation of DIBDTPI to its disulphide. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 28]
机译:通过伏安法和拉曼散射光谱法研究了硫化物矿物浮选捕收剂二异丁基二硫代次膦酸酯(DIBDTPI)与银,铜和金表面的相互作用。伏安法表明DIBDTPI在金上被氧化成其二硫化物,而金属集电极化合物在银和铜上形成。在存在较大电位范围的DIBDTPI的情况下,观察到了银的表面增强拉曼光谱(SERS),并证明了发生了集电极的电荷转移化学吸附。在高电位下,还检测到来自AgDIBDTPI的拉曼光谱。在铜电极上没有明显的SERS光谱,但是从拉曼光谱证实了CuDIBDTPI的形成。用二乙基二硫代磷酸酯在铜上观察到相似的结果,这表明在与硫代磷酸酯捕收剂的相互作用方面,铜金属的行为与硫化铜矿物不同。在金的高电位下,从二硫化物和AuDIBDTPI观察到拉曼光谱。还在激光照射下在金上发现了SERS光谱,这是硫层形成的特征,这可以通过DIBDTPI自由基作为DIBDTPI氧化为其二硫化物的中间体而形成的光解来解释。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:28]

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