Download PDF by Mei Zhang, Rajesh R. Naik, Liming Dai: Carbon Nanomaterials for Biomedical Applications

By Mei Zhang, Rajesh R. Naik, Liming Dai

This e-book covers quite a lot of subject matters with regards to carbon nanomaterials, from synthesis and functionalization to purposes in complicated biomedical units and platforms. As they own distinctive and engaging chemical, actual, optical, or even magnetic homes for numerous purposes, enormous attempt has been made to hire carbon nanomaterials (e.g., fullerenes, carbon nanotubes, graphene, nanodiamond) as new fabrics for the advance of novel biomedical instruments, similar to diagnostic sensors, imaging brokers, and drug/gene supply platforms for either diagnostics and scientific remedy. large growth has been made and the scattered literature maintains to develop rapidly.

With chapters by means of world-renowned specialists supplying an summary of the country of the technology in addition to an realizing of the demanding situations that lie forward, Carbon Nanomaterials for Biomedical Applications is key analyzing not just for knowledgeable scientists and engineers in biomedical and nanomaterials components, but in addition for graduate scholars and complicated undergraduates in fabrics technology and engineering, chemistry, and biology.

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161, 135 (2006) 54. W. F. T. H. L. C. J. C. Yang, Titanium dioxide nanoparticles induceemphysema-like lung injury in mice. FASEB. J. 20, 2393 (2006) 55. B. R. M. L. L. Reed, Pulmonary instillation studies with nanoscale TiO2 rods and dots in rats: toxicity is not dependent upon particle size and surface area. Toxicol. Sci. 91, 227 (2006) 56. P. H. L. B. Ui, Inorganic, nanoparticles as carriers for efficient cellular delivery. Chem. Eng. Sci. 61, 1027 (2006) 57. S. K. M. Song, Does the antibacterial activity of silver nanoparticles depend on the shape of the nanoparticle?

M. ), which further complicate gaining an accurate understanding of the properties responsible for both detrimental and beneficial effects on biological systems. References 1. M. Schrand, T. Benson-Tolle, in Chapter 18: Carbon Nanotube and Epoxy Composites for Military Applications, ed. by L. Dai. Carbon Nanotechnology: Recent Developments in Chemistry, Physics, Materials Science, and Device Applications, (Elsevier, Amsterdam, 2006) 2. A. C. Burgos, J. B. Balbuena, Carbon nanotubes: engineering biomedical applications.

M. Hussain, Assessment of metal nanoparticle agglomeration, uptake, and interaction using a high illuminating system. Int. J. Tox. 26, 135–141 (2007) 65. M. Schrand, K. J. Schlager, L. M. Hussain, Interaction and biocompatibility of multi-walled carbon nanotubes in PC-12 cells. Int. J. Neuroprot. Neurogener. 3(2), 115–121 (2007c) 66. M. Schrand, J. Johnson, L. M. J. Schlager, L. Zhu, Y. Hong, E. Osawa, in Chapter 8: Cytotoxicity and Genotoxicity of Carbon Nanomaterials, ed. by Prof. T. Webster.

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