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Books > Science & Mathematics > Physics > States of matter > Condensed matter physics (liquids & solids)

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Formation of KNbO3 Thin Films for Self-Powered ReRAM Devices and Artificial Synapses (Hardcover, 1st ed. 2018) Loot Price: R3,020
Discovery Miles 30 200
Formation of KNbO3 Thin Films for Self-Powered ReRAM Devices and Artificial Synapses (Hardcover, 1st ed. 2018): Tae-Ho Lee

Formation of KNbO3 Thin Films for Self-Powered ReRAM Devices and Artificial Synapses (Hardcover, 1st ed. 2018)

Tae-Ho Lee

Series: Springer Theses

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Loot Price R3,020 Discovery Miles 30 200 | Repayment Terms: R283 pm x 12*

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This thesis describes an investigation into homogeneous KN crystalline films grown on Pt/Ti/SiO2/Si substrates, amorphous KN films grown on TiN/Si substrates using the RF-sputtering method, and the ferroelectic and piezoelectric properties of these KN films. KNbO3 (KN) thin films have been extensively investigated for applications in nonlinear optical, electro-optical and piezoelectric devices. However, the electrical properties of KN films have not yet been reported, because it is difficult to grow stoichiometric KN thin films due to K2O evaporation during growth. This thesis also reports on the ReRAM properties of a biocompatible KN ReRAM memristor powered by the KN nanogenerator, and finally shows the biological synaptic properties of the KN memristor for application to the artificial synapse of a neuromorphic computing system.

General

Imprint: Springer Verlag, Singapore
Country of origin: Singapore
Series: Springer Theses
Release date: September 2018
First published: 2018
Authors: Tae-Ho Lee
Dimensions: 235 x 155mm (L x W)
Format: Hardcover
Pages: 98
Edition: 1st ed. 2018
ISBN-13: 978-981-13-2534-2
Categories: Books > Science & Mathematics > Physics > States of matter > Condensed matter physics (liquids & solids)
Books > Professional & Technical > Mechanical engineering & materials > Materials science > General
Books > Professional & Technical > Electronics & communications engineering > Electronics engineering > Circuits & components
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LSN: 981-13-2534-0
Barcode: 9789811325342

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