Nanostructured Semiconductors
Amorphization and Thermal Properties
$313.28
- Hardcover
596 pages
- Release Date
20 September 2017
Summary
The book is devoted to nanostructures and nanostructured materials containing both amorphous and crystalline phases with a particular focus on their thermal properties. It is the first time that theoreticians and experimentalists from different domains gathered to treat this subject. It contains two distinct parts; the first combines theory and simulations methods with specific examples, while the second part discusses methods to fabricate nanomaterials with crystalline and amorphous phase…
Book Details
| ISBN-13: | 9789814745642 |
|---|---|
| ISBN-10: | 9814745642 |
| Author: | Konstantinos Termentzidis |
| Publisher: | Pan Stanford Publishing Pte Ltd |
| Imprint: | Pan Stanford Publishing Pte Ltd |
| Format: | Hardcover |
| Number of Pages: | 596 |
| Release Date: | 20 September 2017 |
| Weight: | 1.10kg |
| Dimensions: | 152mm x 229mm |

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Konstantinos Termentzidis
Konstantinos Termentzidis is a CNRS researcher and he works at the LEMTA laboratory, at the University of Lorraine, France since 2012. He started his studies at the Aristotle University of Thessaloniki (Physics Departement and Master Material’s Physics and Technology), and he obtained his PhD at the University of Vienna, at the Computational Material Science group. He worked as a postdoc fellow at INSA of Lyon and at the Ecole Centrale Paris.
His main scientific interest is the theoretical and computational nanoscale heat transport. During, the last 8 years he is studying the phonon transport at nanowires, nanotubes and superlattices with molecular dynamics, with an important publication production in the domain. The nanoscale heat transfer is a crucial issue for a large scope of contexts and applications as biology, medicine, aerospace, communications, electronics and energy. The behavior, reliability, life and cost of these devices depend on the way the system releases heat. As experimental studies are not always available or suitable at this scale, dedicated models and simulations tools are necessary.
Termentzidis with his work elucidated the interaction of phonons with interfaces, defects and surfaces at the nanoscale, a key point to design materials with tailored properties and systems with controlled behavior.
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