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Titlebook: Surface-Enhanced Raman Scattering; Physics and Applicat Katrin Kneipp,Martin Moskovits,Harald Kneipp Book 2006 Springer-Verlag Berlin Heide

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Nicholas P. W. Pieczonka,Paul J. G. Goulet,Ricardo F. Arocas a sharp tip in close proximity to asample to pattern nanometer-scale features on the sample. SPL iscapable of patterning sub-30nm features with nanometer-scale alignmentregistration. It is a relatively simple, inexpensive, reliable methodfor patterning nanometer-scale features on various substrate
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Bruno Pettingere that uses a sharp tip in close proximity to asample to pattern nanometer-scale features on the sample. SPL iscapable of patterning sub-30nm features with nanometer-scale alignmentregistration. It is a relatively simple, inexpensive, reliable methodfor patterning nanometer-scale features on various
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Katrin Kneipp,Harald Kneipp,Henrik G. Bohr development or structural biology. Consequently, the community of users ranges from biologists and medical researchers to physicists and engineers, all of them exploiting the unrivalled resolution and profiting from the relative simplicity of the experimental implementation. In recent years the aut
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Anna Rita Bizzarri,Salvatore Cannistraro devices at the micro-, nano-, and atomic scale levels. While structural information can be obtained by such established techniques as scanning and transmission electron microscopy, high-resolution examination of local electronic structure, electric potential and chemical functionality is a much mor
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Daniel Murgida,Peter Hildebrandte characterization and failure analysis. The rapid development of nanomaterials and nanoscale devices necessitates extending our fundamental understanding of transport phenomena to the nanoscale as well. The ability to conduct nanoscale impedance measurements provides a promising route to extend our
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Vladimir P. Drachev,Vladimir M. Shalaevd on the experimental design and procedures required to optimize the performance of the various methods described. The book covers not only the physical principles behind this popular technique, but also tackles questions on instrument design, the basic features of the different imaging modes, and r
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Chanda Ranjit Yonzon,Olga Lyandres,Nilam C. Shah,Jon A. Dieringer,Richard P. Van Duyneriety of materials. Since its inception, one purpose of STM has been to go beyond imaging by performing local experiments with individual nanoscopic objects addressed by the STM tip [5.1]. The concept of the technique to be presented in this chapter is to use the tip of a STM as a source of low-ener
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