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In situ synchrotron far infrared micro-spectroelectrochemistry with a grazing angle objective

机译:掠角物镜原位同步加速器远红外微光谱电化学

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We demonstrate the use of a grazing angle objective attachment to carry out in situ far infrared micro-spectroelectrochemistry at a copper electrode on a nano-scale. A thin-layer spectrochemical cell made out of Teflon was used, fitted with a 20-mu m thick Mylar window; the working electrode was 500 mu m in diameter. Measurements were carried out in 0.1 M NaOH Solution as a function of applied potential between -1.4 and 0 V vs a Hg/Hg2SO4 reference electrode. Spectra were obtained with excellent signal to noise ratio for the surface oxide film, formed on copper electrochemically with less than 1 nL of active solution Volume. The surface film at 0 V was about 130 nm thick and consisted mainly of CuO, with possibly some Cu(OH)(2) also present. This interpretation is consistent with previous works and thermodynamic calculations. The technique should be useful in other investigations and the further development of electrochemical surface science. (C) 2007 Elsevier B.V. All rights reserved.
机译:我们演示了使用掠角物镜附件在纳米级铜电极上进行原位远红外微光谱电化学。使用由特氟隆制成的薄层光谱化学池,该池装有20微米厚的聚酯薄膜窗口;工作电极的直径为500μm。相对于Hg / Hg2SO4参比电极,在0.1 M NaOH溶液中根据-1.4至0 V之间的施加电势进行测量。对于具有小于1 nL活性溶液体积的电化学方法在铜上形成的表面氧化膜,获得具有极佳信噪比的光谱。 0 V时的表面膜厚约130 nm,主要由CuO组成,可能还存在一些Cu(OH)(2)。这种解释与以前的工作和热力学计算是一致的。该技术应在其他研究和电化学表面科学的进一步发展中有用。 (C)2007 Elsevier B.V.保留所有权利。

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