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Rough with the smooth

Rough with the smooth research highlights reliability of implantable prosthetic devices, easily dissociate in vivo, however, resulting Heart twists such as valves, can be tested. LM in reduced diagnostic accuracy. Now, Adv. Mater. http://doi.org/p94 (2013) Zhao et al. report an improvement in the radiolabel stability of Cu-doped gold Fatigued metallic glasses nanoparticles by the direct incorporation Proc. Natl Acad. Sci. USA http://doi.org/p8z (2013) of Cu into the lattice structure of Despite being substantially more resistant the nanoparticles ( CuAuNPs). The 64 64 to plastic deformation than crystalline CuAuNPs, prepared using CuCl as a metals, metallic glasses are rarely used as precursor, have Cu integrated throughout structural materials because of their high and their activity can be controlled by susceptibility to fatigue. Indeed, because altering the initial activity of CuCl . In glasses lack the typical obstructions to crack a cancer mouse model, Zhao et al. use propagation that crystalline materials have PET imaging to show that the CuAuNPs (such as microstructural defects or grain passively target and heterogeneously boundaries), relatively low cyclic stresses can distribute within the tumour. In vivo cause small cracks to propagate within the pharmacokinetic studies indicate that material. Cheng-Cai Wang and colleagues most of the CuAuNPs are retained within now provide real-time insights into the systemic http://www.deepdyve.com/assets/images/DeepDyve-Logo-lg.png Nature Materials Springer Journals

Rough with the smooth

Nature Materials , Volume 13 (1) – Dec 17, 2013

Rough with the smooth

Abstract

research highlights reliability of implantable prosthetic devices, easily dissociate in vivo, however, resulting Heart twists such as valves, can be tested. LM in reduced diagnostic accuracy. Now, Adv. Mater. http://doi.org/p94 (2013) Zhao et al. report an improvement in the radiolabel stability of Cu-doped gold Fatigued metallic glasses nanoparticles by the direct incorporation Proc. Natl Acad. Sci. USA http://doi.org/p8z (2013) of Cu into the lattice structure of Despite...
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References (1)

Publisher
Springer Journals
Copyright
Copyright © 2014 by Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved.
Subject
Materials Science; Materials Science, general; Optical and Electronic Materials; Biomaterials; Nanotechnology; Condensed Matter Physics
ISSN
1476-1122
eISSN
1476-4660
DOI
10.1038/nmat3853
Publisher site
See Article on Publisher Site

Abstract

research highlights reliability of implantable prosthetic devices, easily dissociate in vivo, however, resulting Heart twists such as valves, can be tested. LM in reduced diagnostic accuracy. Now, Adv. Mater. http://doi.org/p94 (2013) Zhao et al. report an improvement in the radiolabel stability of Cu-doped gold Fatigued metallic glasses nanoparticles by the direct incorporation Proc. Natl Acad. Sci. USA http://doi.org/p8z (2013) of Cu into the lattice structure of Despite being substantially more resistant the nanoparticles ( CuAuNPs). The 64 64 to plastic deformation than crystalline CuAuNPs, prepared using CuCl as a metals, metallic glasses are rarely used as precursor, have Cu integrated throughout structural materials because of their high and their activity can be controlled by susceptibility to fatigue. Indeed, because altering the initial activity of CuCl . In glasses lack the typical obstructions to crack a cancer mouse model, Zhao et al. use propagation that crystalline materials have PET imaging to show that the CuAuNPs (such as microstructural defects or grain passively target and heterogeneously boundaries), relatively low cyclic stresses can distribute within the tumour. In vivo cause small cracks to propagate within the pharmacokinetic studies indicate that material. Cheng-Cai Wang and colleagues most of the CuAuNPs are retained within now provide real-time insights into the systemic

Journal

Nature MaterialsSpringer Journals

Published: Dec 17, 2013

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