Electrochemical deposition of Rh as an active UV-SERS substrate
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摘要: Rh在紫外激發區間有著較強的表面增加拉曼散射(SERS).用循環伏安法研究了RhCl3溶液中Rh3+在Au電極上的電化學還原行為,用恒電位階躍法在Au基底上制備了Rh沉積層,并用場發射掃描電子顯微鏡、能譜及電化學方法對得到的沉積層進行了表征.結果表明,在所選擇的電位下用電沉積方法能夠在金表面得到均勻的Rh沉積層,該沉積層保持了金屬Rh原有的電化學特性.采用電化學方法通過先粗糙Au電極再沉積Rh的策略,可以制備粗糙的Rh表面作為紫外SERS基底.拉曼光譜實驗表明,以吡啶為探針分子,該基底具有很好紫外SERS活性.Abstract: The transition metal Rh is highly active in surface-enhanced Raman scattering (SERS) under ultraviolet activation. The electrochemical deposition behavior of Rh3+ on Au electrode was studied using cyclic voltammetry (CV) and a layer of Rh was prepared on Au substrate by constant potential step method. Scanning electron microscopy (SEM), energy dispersive X-ray spectroscopy (EDX) and electrochemical method were employed to characterize the Rh layer. The experimental results show that a uniform Rh layer has been obtained on Au surface. Electrochemical measurements demonstrate that the resulting Rh layer exhibits the same electrochemical properties as those of bulk Rh in sulfuric solution. The rough Rh substrate was prepared by using the following strategy:firstly, a rough Au substrate was prepared by electrochemical method, and then a layer of Rh was electrochemically deposited on the rough Au surface. The obtained Rh film has the roughness similar to that of Au substrate and exhibits good SERS activity when using pyridine as the probe molecule.
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