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Titlebook: Spectroscopic and Diffraction Techniques in Interfacial Electrochemistry; C. Gutiérrez,C. Melendres Book 1990 Springer Science+Business Me

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发表于 2025-3-21 19:38:00 | 显示全部楼层 |阅读模式
书目名称Spectroscopic and Diffraction Techniques in Interfacial Electrochemistry
编辑C. Gutiérrez,C. Melendres
视频video
丛书名称Nato Science Series C:
图书封面Titlebook: Spectroscopic and Diffraction Techniques in Interfacial Electrochemistry;  C. Gutiérrez,C. Melendres Book 1990 Springer Science+Business Me
描述Electrochemistry is one of the oldest branches of Physical Chemistry. Having its foundations in the work of Faraday, Arrhenius and others, it evolved from the study of transport in electrolyte solutions to that of electrode kinetics. Kinetic methods are inherently unable to identify unequivocally the species involved in a reaction. Therefore, beginning in the 70s many spectroscopic and diffraction techniques were applied to the study of the electrode-electrolyte interface, in order to identify intermediary reaction species, and even the spatial arrangement of atoms or molecules at the interface. In order to disseminate these techniques, a NATO Advanced Sutdy Institute was held at Puerto de la Cruz, Tenerife (Canary Islands, Spain) from July 2 to 15, 1988. The Institute consisted of tutorial type lecutures, poster sessions, and round-table discussions. It was attended by over 65 participants from NATO-member countries, and others from Argentina and Japan. In the present volume most of the lectures presented at the Institute have been collected. At least one chapter is devoted to each technique. Emphasis has been made on case studies, rather than theory, which can be found in textboo
出版日期Book 1990
关键词Ion; chemistry; electrochemistry
版次1
doihttps://doi.org/10.1007/978-94-011-3782-9
isbn_softcover978-94-010-5684-7
isbn_ebook978-94-011-3782-9Series ISSN 1389-2185
issn_series 1389-2185
copyrightSpringer Science+Business Media Dordrecht 1990
The information of publication is updating

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Raman Spectroscopic Techniques in Interfacial Electrochemistry,chieve SERS on Ag and Au electrodes; (3) the possible role of the electrochemical oxidation-reduction cycle in producing and stabilizing metal adatoms and clusters as well as larger scale roughness; and (4) the connection between the fundamentals of the two accepted SERS models (electromagnetic and charge transfer) and the surface roughness.
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Nonlinear Optical Techniques for Surface Studies,ssible by light. In these lectures, we shall give a general review on the development of such techniques. We first present the underlying theory of a second-order optical process at an interface. We then discuss, with examples, the various possible applications of second harmonic and sum-frequency generation for surface studies.
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The Advancing Frontier in the Knowledge of the Structure of Interphases,r/solution interphases, as well as metal/moltensalt interphases. It begins with an account of the classical method of investigating interfaces, which appears to be no longer applicable. Among, topics discussed are the different models of water structure at the double layer, the various potentials in
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Some Recent Spectroscopic Approaches to the Solid-Solution Interface,ructure of the interphase on noble metals,on iron and on numerous semiconductors in contact with aqueous and non-aqueous solutions. It represents the first comprenhensive document which treats structure at the interface as a function of potential and concentration in solution.
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Photoacoustic Spectroscopy and the In-Situ Characterization of the Electrochemical Interface,rs. The basic principles of the photoacoustic effect and the principal results of the Rosencwaig-Gersho theory are discussed in light of the usefulness of the method in electrochemical studies. Different experimental arrangements suitable for in situ electrode studies are presented. A review of the
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Raman Spectroscopic Techniques in Interfacial Electrochemistry,urface enhanced Raman scattering (SERS). The following topics related to Raman spectroscopy and SERS are discussed: (1) The latest advances in Raman instrumentation with emphasis on the recently available two-dimensional detectors; (2) the electrochemical surface activation procedures necessary to a
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Study of Anodic Oxides by UV-Visible Potential-Modulated Reflectance Spectroscopy,PMR signal are discussed, viz. physical and redox. It is postulated that the PMR transitions observed with most anodic films correspond to the absorption edge of oxides present in the film. Results are presented for the anodic oxides on Fe, Ni and Co, and it is shown how in favourable cases the anod
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