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Titlebook: Surface-Enhanced Raman Spectroscopy; Bioanalytical, Biomo Marek Prochazka Book 2016 Springer International Publishing Switzerland 2016 Bioa

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fic disciplines including surface science, materials science, surface chemistry, electrochemistry, biology, metrology, etc. [1.4-6], and constitute indispensable tools for the new age of nanotechnology. This is primarily based on the ability to image and locally probe surfaces of metals, semiconduct
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Marek Prochazkaion is actually accessible in the experiments. The change of the position of the SPM tip is a result of measurements of constant-current/height contours. But the change of the position of surface atoms under given experimental conditions cannot be determined. This makes simulations the only source o
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Marek Prochazkaion is actually accessible in the experiments. The change of the position of the SPM tip is a result of measurements of constant-current/height contours. But the change of the position of surface atoms under given experimental conditions cannot be determined. This makes simulations the only source o
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d of scanning probe theory. Writing in a tutorial style, the authors explain from scratch the theory behind today’s simulation techniques and give examples of theoretical concepts through state-of-the-art simulations, including the means to compare these results with experimental data. The book prov
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Book 2016s of this technique. Raman scattering (RS) is a widely used vibrational technique providing highly specific molecular spectral patterns. A severe limitation for the application of this spectroscopic technique lies in the low cross section of RS. Surface-enhanced Raman scattering (SERS) spectroscopy
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Introduction,for sample pretreatment. Raman spectroscopy is a highly specific technique that enables identification of molecules through their specific molecular fingerprint information as observed in their Raman spectra.
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