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Diamonds in waveguides

Diamonds in waveguides research highlights QUANTUM PLASMONICS IMPLANTABLE DEVICES other forms. Now, Thomas Bennett and colleagues report a new phase transition Diamonds in waveguides A solid base behaviour observed on heating zeolitic Nature Commun. 6, 7883 (2015) Adv. Healthcare Mater. imidazole frameworks (ZIFs). By carefully http://doi.org/f3czxp (2015) increasing temperature over time they Microelectrode arrays composed of multiple were able to prevent ZIF degradation, and silicon needles are used as penetrating instead observed framework melting into devices to record brain electrical activity an amorphous liquid. On further heating a in vivo. Long and ultrathin needles are dense crystalline phase was observed, which required to reach deeper regions in the brain can also be remelted. Subsequent quenching while minimizing penetration-induced tissue yields a hybrid glass. Apart from the potential damage; however, an increased aspect ratio new practical applications for MOFs that this reduces the stiffness of the needle, which may behaviour may allow, this process may also 1.25 µm break during the implantation procedure. offer a route for the synthesis of glasses with Now, Satoshi Yagi and colleagues show that controllable chemical functionality. JH a bioresorbable silk layer deposited at the 0.12 µm ARCHITECTURED MATERIALS base of 650-μm-long, 5-μm-thick silicon needles acts as a temporary http://www.deepdyve.com/assets/images/DeepDyve-Logo-lg.png Nature Materials Springer Journals

Diamonds in waveguides

Nature Materials , Volume 14 (10) – Sep 23, 2015

Diamonds in waveguides

Abstract

research highlights QUANTUM PLASMONICS IMPLANTABLE DEVICES other forms. Now, Thomas Bennett and colleagues report a new phase transition Diamonds in waveguides A solid base behaviour observed on heating zeolitic Nature Commun. 6, 7883 (2015) Adv. Healthcare Mater. imidazole frameworks (ZIFs). By carefully http://doi.org/f3czxp (2015) increasing temperature over time they Microelectrode arrays composed of multiple were able to prevent ZIF degradation, and silicon needles are used as...
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References (1)

Publisher
Springer Journals
Copyright
Copyright © 2015 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/nmat4441
Publisher site
See Article on Publisher Site

Abstract

research highlights QUANTUM PLASMONICS IMPLANTABLE DEVICES other forms. Now, Thomas Bennett and colleagues report a new phase transition Diamonds in waveguides A solid base behaviour observed on heating zeolitic Nature Commun. 6, 7883 (2015) Adv. Healthcare Mater. imidazole frameworks (ZIFs). By carefully http://doi.org/f3czxp (2015) increasing temperature over time they Microelectrode arrays composed of multiple were able to prevent ZIF degradation, and silicon needles are used as penetrating instead observed framework melting into devices to record brain electrical activity an amorphous liquid. On further heating a in vivo. Long and ultrathin needles are dense crystalline phase was observed, which required to reach deeper regions in the brain can also be remelted. Subsequent quenching while minimizing penetration-induced tissue yields a hybrid glass. Apart from the potential damage; however, an increased aspect ratio new practical applications for MOFs that this reduces the stiffness of the needle, which may behaviour may allow, this process may also 1.25 µm break during the implantation procedure. offer a route for the synthesis of glasses with Now, Satoshi Yagi and colleagues show that controllable chemical functionality. JH a bioresorbable silk layer deposited at the 0.12 µm ARCHITECTURED MATERIALS base of 650-μm-long, 5-μm-thick silicon needles acts as a temporary

Journal

Nature MaterialsSpringer Journals

Published: Sep 23, 2015

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