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Download PDF by Maria Letizia Terranova, Silvia Orlanducci, Marco Rossi: Adsorption of gases in carbon nanotubes

By Maria Letizia Terranova, Silvia Orlanducci, Marco Rossi

Research in adsorption of gases by means of carbon nanomaterials has skilled significant progress lately, with expanding curiosity for useful functions. Many examine teams at the moment are generating or utilizing such fabrics for gasoline adsorption, garage, purification, and sensing. This publication offers a particular assessment of a few of the main attention-grabbing medical effects concerning the extraordinary homes of carbon nanomaterials for gasoline adsorption and of curiosity either for uncomplicated study and technological functions. themes receiving particular recognition during this booklet comprise garage of H, purification of H, garage of infrequent gases, adsorption of natural vapors, gasoline trapping and separation, and metrology of gasoline adsorption.

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K. Burns, Mode Dispersion in Diffused Channel Waveguide by the Effective Index Method, Applied Opt. 16, 113 (1997). 27. A. Marcatili, Dielectric Rectangular Waveguide and Directional Coupler for Integrated Optics, Bell System Tech. J. 48, 2071 (1969). 28. A. Sharma, Analysis of Integrated Optical Waveguides: Variational Method and Effective Index Method with Built-in Perturbation Correction, J. Opt. Soc. Am. A18, 1383 (2001). 29. S. Chiang, Review of Numerical and Approximate Methods for the Modal Analysis of General Optical Dielectric Waveguides, Opt.

A. Taneja and A. Sharma, Propagation of Beams through Optical Waveguiding Structures: Comparison of the Beam Propagation Method and the Collocation Method, J. Opt. Soc. Am. A 10, 1739 (1993). 41. A. Sharma and A. Taneja, Variable Transformed Collocation Method for Field Propagation through Optical Waveguide Structures, Opt. Lett. 17, 804 (1992). 42. A. Sharma and A. Agarwal, Wide Angle and Bidirectional Beam Propagation Using the Collocation Method for the Non-Paraxial Wave Equation, Opt. Commun.

In addition, a technique called the multistep method, also developed by Hadley (46), has proven useful for treating non-Fresnel regime propagation. The splitting of the propagation operator has been successfully applied to wide-angle problems, and has been implemented in both the collocation and FD-BPM. 8 SUMMARY Considerable progress has been made in modeling and simulation, both analytical and numerical, of various waveguides and photonic devices. In this chapter, particular emphasis has been placed on planar waveguides.

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Adsorption of gases in carbon nanotubes by Maria Letizia Terranova, Silvia Orlanducci, Marco Rossi

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