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53 Nanocrystalline Ceramics

N. Kossovsky, A. Gelman, E. Sponsler, H. Hnatyszyn 1994, (Surface modified nanocrystalline ceramics for drug delivery application), Biomaterials 15, 1201. [Pg.320]

Das R.N. 2001. Nanocrystalline ceramics from sucrose process. Mater. Lett. 47 344-50. [Pg.16]

Mayo, M.J., Processing of nanocrystalline ceramics from ultrafine particles , Int. Mater. Rev., 1996, 41, 85-115. [Pg.456]

Chen, I.W., and Wang, X.H., Sintering dense nanocrystalline ceramics without final-stage grain growth , Nature, 2000, 404, 168-71. [Pg.456]

Ciftcioglu, M., and Mayo, M. J., Processing of nanocrystalline ceramics, in Superplastidty in Metals, Ceramics and Intermetallics Symposium Proceedings (M. J. Mayo, M. Kobayashi, J. Wadsworth, Eds.), pp. 77-86. Materials Research Society, Pittsburgh (1990). [Pg.161]

J.R. Lu, et al., Neodymium doped yttrium aluminum garnet (Y3A15012) nanocrystalline ceramics - a new generation of solid state laser and optical materials.. /. Alloys Compd. 341(1-2), 220-225 (2002). [Pg.69]

R 428 U. Heinemann, Establishing a Structural Genomics Platform The Berlin-Based Protein Structure Factory , Gene Funct. Disease, 2002,3,25 R 429 P. Heitjans and S. Indris, Diffusion and Ionic Conduction in Nanocrystalline Ceramics , J. Phys. -Condens. Mat., 2003,15, R1257 R 430 R. J. Hernandez, Influence of a Nontraditional Aluminosilicate Introduction on the Chemical Resistance of a Soda-Lime Glass , Glass Phys. Chem., 2003,29, 575... [Pg.34]

Chaim R, Levin M, Shlayer A, Estoumes C (2008) Sintering and densification of nanocrystalline ceramic oxide powders a review. Adv Appl Ceram 107 159-169... [Pg.390]

Fig. 5. The domain images of BaTiOs nanocrystalline ceramics by SNDM at different temperature and the cross sectional image along the lines in the corresponding temperature Domain images of SNDM (a) at 25 °C, (b) at 50 °C, (c) at 100 °C, (d) at 150 °C, (e) at 200 (f) at 290 °C Cross... Fig. 5. The domain images of BaTiOs nanocrystalline ceramics by SNDM at different temperature and the cross sectional image along the lines in the corresponding temperature Domain images of SNDM (a) at 25 °C, (b) at 50 °C, (c) at 100 °C, (d) at 150 °C, (e) at 200 (f) at 290 °C Cross...
Strain rates associated with this process are proportional to the grain-boundary dififusivity coefficient and the grain diameter at some power. Generally, deformation by these mechanisms is observed in polycrystaUine materials only at elevated temperatures. The hope is that higher, more effective grain-boundary diffusion coefficients may be realized in nanocrystalline ceramics, so that diffusion-based mechanisms may be induced and activated also at RT. [Pg.757]

Biomolecular Delivery Using Coated Nanocrystalline Ceramics (Aquasomes)... [Pg.334]

DNase, a well characterized and biologically specific enzyme with therapeutic value in the treatment of cystic fibrosis, was chosen as a model agent for studying the effects on an enzymatic bio/molecule of surface immobilization on nanocrystalline ceramic particulates. As the data show, and consistent with previous observations, DNase exhibits a marked retention of biological activity when surface immobilized on the solid phase of a colloid comprised of polyhydroxyl oligomeric films investing degradable calcium-phosphate nanoparticles. [Pg.335]

KOSSOVSKY Biomolectdar Delivery Using Nanocrystalline Ceramics 341... [Pg.341]

Characterization and Properties of Various Proteins Adsorbed to Surface Modified Nanocrystalline Ceramics... [Pg.343]

KOSSOVSKY Biomokcular Delivery Using Nanocrystalline Ceramics 349... [Pg.349]


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Coated nanocrystalline ceramics

Nanocrystalline

Nanocrystalline coatings ceramic

Nanocrystallines

Nanocrystallinity

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