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Titlebook: In-situ Characterization Techniques for Nanomaterials; Challa S.S.R. Kumar Book 2018 Springer-Verlag GmbH Germany, part of Springer Nature

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Tools and Electrochemical In Situ and On-Line Characterization Techniques for Nanomaterials,try, and physics. Electrochemical study of perfect smooth or bulk materials was the usual way to understand the interaction between the surfaces of such materials with their close environment. Therefore, any modification of the surface structure or composition provides change in the material behavio
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Bin Yang,Jong K. Keum,David B. Geohegan,Kai Xiaole interlinked information. .This living project will serve as a reliable and comprehensive data pool for everybody working in inflammation research. Owing to its dynamic nature, it will grow with time and futu978-3-7643-8550-7
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Chandrani Nayak,S. N. Jha,Dibyendu Bhattacharyyale interlinked information. .This living project will serve as a reliable and comprehensive data pool for everybody working in inflammation research. Owing to its dynamic nature, it will grow with time and futu978-3-7643-8550-7
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Têko W. Napporn,Laetitia Dubau,Claudia Morais,Mariana R. Camilo,Julien Durst,Fabio H. B. Lima,Frédérle interlinked information. .This living project will serve as a reliable and comprehensive data pool for everybody working in inflammation research. Owing to its dynamic nature, it will grow with time and futu978-3-7643-8550-7
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Wide-Field Surface Plasmon Resonance Microscopy for In-Situ Characterization of Nanoparticle Suspenand concentrated form, but also at trace concentrations in environment, drinking water and food, healthcare and pharmacological products, biological fluids, etc. Ideally, such a technique should provide a possibility to detect NPs at the level of single particles and deliver information on their con
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Tools and Electrochemical In Situ and On-Line Characterization Techniques for Nanomaterials,f nanoscale materials has changed the approach of studying and identifying active sites in heterogeneous catalysis, and particularly in electrocatalysis. Indeed, electrocatalysis uses the surface of a material, which is submitted to an electrode potential, as the reaction site. Therefore, the materi
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