Organic and Inorganic Nanostructures

References

[1] Edelstein, A. S., and R. C. Cammarata, (eds.), Nanomaterials, Synthesis, Properties and Applications, Bristol, PA: IoP Publishing, 1996.

[2] Brust, M., et al., "Synthesis of Thiol-Derivatized Gold Nanoparticles in a 2-Phase Liquid-Liquid System," J.Chem. Soc.- Chem. Comm., Vol. 7, 1994, pp. 801 802.

[3] Talapin, D. V., et al., "Synthesis of Surface-Modified Colloidal Semiconductor Nanocrystals and Study of Photoinduced Charge Separation and Transport in Nanocrystal-Polymer Composites," Physica E, Vol. 14, No. 1 2, 2002, pp. 237 241.

[4] Puntes, V. F., and K. M Krishnan, "Synthesis, Structural Order and Magnetic Behavior of Self-Assembled Epsilon-Co Nanocrystal Arrays," IEEE Trans. on Magnetics, Vol. 37, No. 4, 2001, pp. 2210 2212.

[5] Schultz, D. L., et al., "High Quality CdTe Films from Nanoparticle Precursors," IEEE, 25th PVSC, Washington, D.C., May 13 17, 1996, pp. 929 932.

[6] Cortan, A. R., et al., "Nucleation and Growth of CdSe on ZnS Quantum Crystallite Seeds, and Vice Versa, in Inverse Micelle Media," J. Am. Chem. Soc., Vol. 112, No. 4, 1990, pp. 1327 1332.

[7] Mann, S., et al., "Precipitation Within Unilamellar Vesicles. 2. Membrane Control of Ion-Transport," J. Chem. Soc.-Dalton Trans., No. 4, 1983, pp. 771 774.

[8] Mann, S., J. P. Hannington, and R. J. P. Williams, "Phospholipid-Vesicles as a Model System for Biomineralization," Nature, Vol. 324, No. 6097, 1986, pp. 565 567.

[9] Bhandarkar, S., and A. Bose, "Synthesis of Nanocomposite Particles by Intravesicular Coprecipitation," J. Colloid Interface Sci., Vol. 135, No. 2,

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