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Titlebook: Carbon; The Future Material Giacomo Messina,Saveria Santangelo Book 2006 Springer-Verlag Berlin Heidelberg 2006 Raman spectroscopy.Sensor.

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Jamie T. Cargill RN, RNT, MSc, PGCEe analysis of the response of CVD diamond-based detectors is used to extract qualitative and quantitative information on the properties of defects limiting the free movement of charge carriers in the detector (e.g., carrier type for which the traps are active, activation energies, geometrical distribution in the film, etc.). Milani-begin
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Patti L. Batchelder RN, MSN, PPCNP-BCerential charge collection, which can show the distribution of charge production (through the Bragg’s ionization curve) and destruction (through the defects, and therefore on defect density along the particle path). Minimization of this defect density allows us to optimize the deposition procedure of CVD diamonds.
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https://doi.org/10.1007/978-3-319-49319-0structural properties of the laser ablation-deposited CN. films depend strongly on the regime under which the plasma expansion takes place, not simply on the overall nitrogen content. In this respect the role played by the gas composition and pressure are of fundamental importance.
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A challenge to the principle-based approach,and general way in the frame of the Hückel theory. The generalisation of this theory to the determination of a vibrational potential for a two–dimensional (2D) crystal (graphene) and for carbon nanotubes of any diameter and chirality is presented and discussed in this work.
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,Defects in CVD Diamond Films from Their Response as Nuclear Detectors,e analysis of the response of CVD diamond-based detectors is used to extract qualitative and quantitative information on the properties of defects limiting the free movement of charge carriers in the detector (e.g., carrier type for which the traps are active, activation energies, geometrical distribution in the film, etc.). Milani-begin
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