By Siegel R. W., Hu E., Roco M. C.
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Each may have unique capabilities that will benefit a particular property, application, or process. The most generally applicable of them are likely to have significant technological impact and commercial potential. In the area of dispersions and coatings, covered in Chapter 3 by John Mendel, a wide range of new and enhanced functionalities are now becoming available by means of nanostructuring. They cover the whole set of properties that are of interest in optical, thermal, and electrical applications.
Some examples of the present technological impact of nanostructuring are thermal and optical barriers, imaging enhancement, ink-jet materials, coated abrasive slurries, and information-recording layers. From our vantage point at present, there appears to be very strong potential impact in the areas of targeted drug delivery, gene therapy, and multifunctional coatings. Nevertheless, certain central issues must be addressed if work in this area is going to continue to affect society in meaningful new ways in the coming years.
1998. Nanoparticle Dispersions. In R&D status and trends, ed. Siegel et al. , P. D. Stucky. 1998. Large-cage zeolite structures with multidimensional 12-ring channels. Science 278:2080-2085. G. Keil. 1997. Combustion synthesis of silicon carbide powder. In Proc. of the Joint NSF-NIST Conf. on Nanoparticles. W. Murray. 1986. Science, 231: 25. J. Luyken, K. Cherrey, H. L. G. Louie, and A. Zettl. 1995.
Nanostructure Science and Technology. A Worldwide Study by Siegel R. W., Hu E., Roco M. C.