The EDS analyses confirmed that laser irradiation affected the ch

The EDS analyses confirmed that laser irradiation affected the chemical composition as well; part of the organic matter is believed to be burned away owing to the laser irradiation. This approach suggests a promising step towards engineering green 3-D platforms from sustainable materials. The as-engineered carbonaceous materials would have very broad practical applications in a variety

IWP-2 clinical trial of areas, such as environmental, catalytic, electronic, sensing, and biological applications. They can also be utilized to form biodegradable nanocomposites with other materials, e.g., polymers. Acknowledgements This research is funded by the Natural Science and Engineering Research Council of Canada. References 1. Liu Z: Synthetic methodologies for carbon nanomaterials. Adv Mater 2010,22(17):1963–1966.CrossRef 2. Hoheisel TN: Nanostructured carbonaceous materials from molecular precursors. Angew Chem Int Ed 2010,49(37):6496–6515.CrossRef 3. Ma D, Zhang M, Xi G, Zhang J, Qian Y: Fabrication and characterization of ultralong Ag/C nanocables, carbonaceous nanotubes, and chainlike β-Ag2Se nanorods inside

carbonaceous nanotubes. Inorg Chem 2006,45(12):4845–4849.CrossRef 4. Simpson CD, Mattersteig G, Martin K, Gherghel L, Bauer RE, Räder HJ, Müllen K: Nanosized molecular propellers by cyclodehydrogenation of polyphenylene buy Go6983 dendrimers. J Am Chem Soc 2004,126(10):3139–3147.CrossRef 5. AZD6738 chemical structure Khabashesku VN, Margrave JL, Barrera EV: Functionalized carbon nanotubes and nanodiamonds for engineering and biomedical applications. Diam Relat Mater 2005,14(3):859–866.CrossRef 6. Tibbetts GG, Lake ML, Strong KL, Rice BP: A review of the fabrication and properties of vapor-grown carbon nanofiber/polymer composites. Compos Sci Technol 2007,67(7–8):1709–1718.CrossRef 7. Jang J, Yoon H: Multigram-scale Adenosine triphosphate fabrication of monodisperse conducting polymer and magnetic carbon nanoparticles. Small 2005,1(12):1195–1199.CrossRef 8.

Yakovlev VA, Yeletsky PM, Lebedev MY, Ermakov DY, Parmon VN: Preparation and investigation of nanostructured carbonaceous composites from the high-ash biomass. Chem Eng J 2007,134(1):246–255.CrossRef 9. Moriguchi I, Koga Y, Matsukura R, Teraoka Y, Kodama M: Novel synthesis of polymer and carbonaceous nanomaterials via a micelle/silicate nanostructured precursor. Chem Commun 2002, 17:1844–1845.CrossRef 10. Tavangar A, Tan B, Venkatakrishnan K: Synthesis of three-dimensional calcium carbonate nanofibrous structure from eggshell using femtosecond laser ablation. J Nanobiotechnology 2011, 9:1.CrossRef 11. Titirici MM, Thomas A, Yu SH, Müller JO, Antonietti M: A direct synthesis of mesoporous carbons with bicontinuous pore morphology from crude plant material by hydrothermal carbonization. Chem Mater 2007,19(17):4205–4212.CrossRef 12.

Comments are closed.