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Original Articles

Poly(vinyl pyrrolidone) Mediated Solubilization and Stabilization of Fullerene C60 in the Form of Nanofluid in an Alcoholic Medium

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Pages 1064-1072 | Received 26 Jun 2015, Accepted 29 Jun 2015, Published online: 15 Sep 2015

References

  • Choi, S. U. S., Zhang, Z. G., Keblinski, P., and Nalwa, H. S. (2004), Nanofluids: in encyclopedia of nanoscience and nanotechnology, Vol. 6, 757−773, American Scientific Publisher, Los Angels, USA.
  • Das, S. K., Choi, S. U. S., Yu, W., and Pradeep, T. (2007), Nanofluids: Science and technology, Wiley.
  • Choi, S. S. (1995), Developments and applications of non-newtonian flows, MD-66, 99.
  • Lee, J., Cho, S., Hwang, Y., Cho, H. -J, Lee, C., Choi, Y., Ku, B. -C., Lee, H., Lee, B., Kim, D., Kim, S. H. (2009) Application of fullerene-added nano-oil for lubrication enhancement in friction surfaces, Tribol. Int., 42: 440–447.
  • Liu, Y. H., Liu, P. X., Che, L., Shu, C. Y., and Lu, X. C. (2012) Tunable tribological properties in water based lubrication of water-soluble fullerene derivatives via varying terminal groups. Chin. Sci. Bull., 57: 4641–4645.
  • Mishra, A. and Bäuerle, P. (2012) Small molecule organic semiconductors on the move: Promises for future solar energy technology. Angew. Chem., Int. Ed., 51: 2020–2067.
  • Bartynski, A. N., Trinh, C., Panda, A., Bergemann, K., Lassiter, B. E., Zimmerman, J. D., Forrest, S.R., and Thompson, M. E. (2013) A fullerene-based organic exciton blocking layer with high electron conductivity. Nano Lett., 13: 3315−3320.
  • Kai, Y., Komazawa, Y., Miyajima, A., Miyata, N., and Yamakoshi Y. (2003), [60]Fullerene as a novel photoinduced antibiotic, Fuller. Nanotub. Carb. N., 11: 79−87.
  • Podolski, I. Y., Kondratjeva, E. V., Gurin, S. S., Dumpis, M. A., and Piotrovsky, L. B. (2004) Fullerene C60 complexed with poly(N-vinyl-pyrolidone) (C60/PVP) prevents the disturbance of long-term memory consolidation induced by cycloheximide. Fuller. Nanotub. Carb. N., 12: 421–424.
  • Sirotinkin, A. K., Zarubaev, V. V., Poznyiakova, L. N., Dumpis, M. A., Muravieva, T. D., Krisko, T. K., Belousova, I. M., Kiselev, O. I., and Piotrovsky, L. B. (2006) Pristine fullerene C60: Different water soluble forms-Different mechanisms of biological action. Fuller. Nanotub. Carb. N., 43: 327–333.
  • Cataldo, F., and Braun, T. (2007) The solubility of C60 fullerene in long chain fatty acids esters. Fuller. Nanotub. Carb. N., 15: 331–339.
  • Popov, V. A., Tyunin, M. A., Zaitseva, O. B., Karaev, R. H., Sirotinkin, N. V., Dumpis, M. A., and Piotrovsky, L. B. (2008) C60/PVP complex- No toxicity after introperitoneal injection to rats. Fuller. Nanotub. Carb. N., 16: 693–697.
  • Cataldo, F. (2008). Solubility of fullerenes in fatty acids esters: a new way to deliver in vivo fullerenes. Theoretical calculations and experimental results. In Medicinal Chemistry and Pharmacological Potential of Fullerenes and Carbon Nanotubes Cataldo, F, da Ros, T (Eds.), (pp. 317–335). Springer Netherlands.
  • Cao, G. (2004), Nanostructures and nanomaterials: synthesis, properties, and applications, Imperial College Press, London.
  • Cosgrove, T. (2010), Colloid science: Principle, methods, and applications, Wiley.
  • Yu, W. and Xie, H. (2012), A review on nanofluids: Preparation, stability mechanisms, and applications, J. Nanomater., 2012: p. 435873 (17 pages).
  • Yamakoshi, Y. N., Yagami, T., Fukuhara, K., Sueyoshi, S., and Miyata, N. (1994), Solubilization of fullerenes into water with polyvinylpyrrolidone applicable to biological tests, J. Chem. Soc., Chem. Comm., 4:517−518.
  • Ungurenasu, C. and Airinei, A. (2000), Highly stable C60/Poly(vinylpyrrolidone) charge-transfer complexes afford new predictions for biological applications of underivatized fullerenes, J. Med. Chem., 43: 3186−3188.
  • Tong, J., Zimmerman, M. C., Li, S.; Yi, X.; Luxenhofer, R.; Jordan, R.; and Kabanov, A. V. (2011) Neuronal uptake and intracellular superoxide scavenging of a fullerene (C60)-poly(2-oxazoline)s nanoformulation, Biomaterials, 32: 3654–3665.
  • Torres, V. M., Posa, M., Srdjenovic, B., and Simplicio, A. (2011), Solubilization of fullerene C60 in micellar solutions of different solubilizers, Colloids Surf. B., 82:. 46–53.
  • Behera, M. and Ram, S. (2012), Solubilization and stabilization of fullerene C60 in water in presence of poly(vinyl pyrrolidone) molecules, J. Incl. Phenom. Macrocycl. Chem., 72: 233−239.
  • Behera, M. and Ram, S. (2015), Mechanism of solubilizing fullerene C60 in presence of poly(vinyl pyrrolidone) molecules in water. Fuller. Nanotub. Carb. N.. doi: 10.1080/1536383X.2015.1041109.
  • Semenov, K. N., Charykov, N. A., Keskinov, V. A., Piartman, A. K., Blokhin, A. A., and Kopyrin, A. A. (2010), Solubility of light fullerenes in organic solvents, J. Chem. Eng. Data., 55:. 13−36.
  • Leach, S., Vervloet, M., Desprès, A., Bréheret, E., Hare, J. P., Dennis, T. J., Kroto, H. W., Taylor, R., and William, R. M. (1992), Electronic spectra and transitions of the fullerene C60, Chem. Phys., 160: 451−466.
  • Sibley, S. P., Campbell, R. L., and Silber, H. B. (1995), Solution and solid state interactions of C60 with substituted anilines, J. Phys. Chem., 99: 5274−5276.
  • Konarev, D. V., Semkin, V. N., Graja, A., and Lyubovskaya, R. N. (1998), Steric conditions for donor-acceptor interactions in C60 complexes with planar organic donors, J. Mol. Struct., 450: 11−22.
  • Mishra, A. and Ram, S. (2007), Surface enhanced optical absorption and photoluminescence in nonbonding electrons in small poly(vinyl pyrrolidone) molecules, J. Chem. Phys., 126: 084902 (1–6).
  • Liu, S., Sui, Y., Guo, K., Yin, Z., and Gao, X. (2012), Spectroscopic study on the interaction of pristine C60 and serum albumins in solution, Nanoscale Res. Lett.,. 7: 433−439.
  • Wei, L., Wu, Y., Wang, L., Fu, H., and Yao, J. (2011), Supramolecular synthesis of fullerene/tetracene hybrid flowerlike microstructures of nanoplates via the charge-transfer interactions, J. Phys. Chem., C, 115: 21629–21634.
  • Thomas, M., Worfolk, B. J., Rider, D. A., Taschuk, M. T., Buriak, J. M., and Brett, M. J. (2011), C60 fullerene nanocolumns-polythiphene heterojunctions for inverted organic photovoltaic cells, ACS Appl. Mater. Interfaces, 3: 1887–1894.
  • Campbell, K., Zappas, A., Bunz, U., Thio, Y. S., and Bucknall, D. G. (2012), Fluorescence quenching of poly(para-phenylene ethynylenes) by C60 fullerenes. J. Photochem. Photobiol. A Chem., 249: 41−46.
  • Masuda, K., Abe, T., Benten, H., Ohkita, H., and Ito, S. (2010), Fabrication and conductive properties of multilayered ultrathin films disgned by layer-by-layer assembly of water soluble fullerenes, Langmuir, 26: 13472−13478.
  • Manson, J., Kumar, D., and Meenan, B. J. (2011), Polyethylene glycol functionalized gold nanoparticles: the influence of capping density on stability in various media, Gold Bull., 44: 99−105.
  • Borodko, Y., Habas, S. E., Koebel, M., Yang, P., Frei, H., and Somorjai, G. A. (2006), Probing the interaction of poly(vinylpyrrolidone) with platinum nanocrystals by UV—Raman and FTIR, J. Phys. Chem. B, 110:. 23052–23059.
  • Borodko, Y., Humphrey, S. M., Don Tilley, T., Frei, H., and Somorjai, G. A. (2007), Charge-transfer interaction of poly(vinylpyrrolidone) with platinum and rhodium nanoparticles, J. Phys. Chem. C, 111: 6288−6295.
  • Carotenuto, G. and Nicolais, L. (2004), Synthesis and characterization of gold-based nanoscopic additives for polymers, Compos. Part B-Eng., 35: 385–391.
  • Mishra, A. and Ram, S. (2009), Selective light-emission in nonbonding electron transitions in poly(vinyl pyrrolidone) molecules on spin-coating in thin layers, J. Phys. Chem. A, 113: 14067–14073.
  • Yekeler, H. (2001) An investigation of keto-enol tautomerism in N-vinyl-2-, and 3-pyrrolidones using ab initio and density functional theory calculations, Chem. Phys., 270: 391–403.

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