Synthesis And Investigation Of Properties Of Barium Titanate Doped With Ferromagnetic Materials For Use In Spin Field Effect Transistors PDF Download

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Synthesis and Investigation of Properties of Barium Titanate Doped with Ferromagnetic Materials for Use in Spin Field Effect Transistors

Synthesis and Investigation of Properties of Barium Titanate Doped with Ferromagnetic Materials for Use in Spin Field Effect Transistors
Author: Kapildev Kulkarni
Publisher:
Total Pages: 160
Release: 2004
Genre: Barium
ISBN:

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"The fundamental aspect of this research was to synthesize nano particles of certain materials and to investigate their properties related to potential use in spin-field effect transistor (Spin-FET). Barium titanate was doped with ferromagnetic material and nano particles of this material were synthesized using a sol-gel process. Sol-gels were characterized for their size and shape using an atomic force microscope and a scanning electron microscope. Composition of these compounds and the distribution of dopents were investigated using x-ray fluorescence and the scanning electron microscope. Dielectric properties were measured using high precision impedance, capacitance, and resistance (LCR) meter. Barium titanate, when doped with ferromagnetic materials, becomes ferroelectric material. Ferroelectric materials have finite polarization even in the absence of an applied electric field, which can be exploited for their use as source/drain in spin-FET. The sintering temperature and pH of the sol-gel solution play important roles in determining the dielectric constants, particle size and distribution of dopent in barium titanate. It was found that iron has advantage over nickel and cobalt as a dopent, as it has high electrical susceptibility"--Leaf iii.


Synthesis and Characterization of Lanthanum Doped Barium Titanate for High-k Dielectric Materials

Synthesis and Characterization of Lanthanum Doped Barium Titanate for High-k Dielectric Materials
Author: Nur Farahin Abdul Hamid
Publisher:
Total Pages: 128
Release: 2016
Genre:
ISBN:

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There are three main parts of this research. First, the parent compositions of pure BaTiO3 were studied as a standard sample. The optimum temperatures for synthesis were determined based on pure BaTiO3 sample. Second, the solid solution limit for La-doped BaTiO3 were investigated. For the effect of doping, the analogue’s composition of Ba1-xLaxTiO3 and Ba1-xLaxTi1-x/4O3 are synthesized and studied ; next, the structural properties of lanthanum doped barium titanate was characterized by using X-ray Diffraction (XRD) and Rietveld Refinement analysis. The analysis followed by electrical characterization using impedance spectroscopy.


Investigation of Rare Earth-doped Barium Titanate Thin Films and Their Optical Properties

Investigation of Rare Earth-doped Barium Titanate Thin Films and Their Optical Properties
Author: Andrew R. Teren
Publisher:
Total Pages:
Release: 2001
Genre:
ISBN:

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Ridge waveguides were fabricated using the Er:BaTiO3 films doped with approximately 1 at.% Er. Pump/probe measurements showed stimulated emission resulted in a 2.4 dB reduction in the 1,540 nm absorption. It was concluded that to achieve net optical gain, the background losses need to be further reduced.


Titanate Based Ceramic Dielectric Materials

Titanate Based Ceramic Dielectric Materials
Author: R. Saravanan
Publisher: Materials Research Forum LLC
Total Pages: 167
Release: 2018-02-25
Genre: Technology & Engineering
ISBN: 1945291559

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Barium titanate is one of the most important electronic materials; due to its high permittivity, low dielectric loss and high tunability. The environment friendly material is suitable for microphones and microwave device applications such as tunable capacitors, delay lines, filters, resonators and phase shifters. Doped titanates are extensively used for various electronic devices, such as transducers, piezoelectric actuators, passive memory storage devices, dynamic random access memory (DRAM), multilayer ceramic capacitors (MLCCs), positive temperature coefficient resistors (PTCR), optoelectronic devices and infrared sensors. The book presents research results concerning the electron density distribution in a number of doped barium titanate ceramic materials using experimental X-ray diffraction data, UV-visible spectrophotometry (UV-vis), scanning electron microscopy (SEM) and energy dispersive X-ray spectroscopy (EDS). The analysis of interatomic bonding and electron density distribution is important for predicting the properties of potentially important materials and has previously been lacking for the materials studied. Barium Titanate, Barium Titanate Doping, Dielectric Ceramics, Permittivity, Tunability, Transducers, Piezoelectric Actuators, Memory Storage Devices, Multilayer Ceramic Capacitors, Optoelectronic Devices, X-Ray Diffraction Data, UV-Visible Spectrophotometry, Energy Dispersive X-Ray Spectroscopy, Interatomic Bonding, Electron Density Distribution, Ceramic Property Predictions.


Chemical Control of the Polymorphic Phase Boundaries in Doped Barium Titanate

Chemical Control of the Polymorphic Phase Boundaries in Doped Barium Titanate
Author: Sarah Ann Turp
Publisher:
Total Pages: 450
Release: 2013
Genre: Barium titanate
ISBN:

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Barium titanate (BaTiO3), a known ferroelectric material, is of great interest as a future lead-free piezoelectric if appropriately doped to tailor the electric properties for specific applications. This work focuses on the study and rationalisation of the dielectric properties of a series of A-site/B-site co-doped compositions: SrZrO3-BaTiO3, CaZrO3-BaTiO3, LaScO3-BaTiO3 and GdScO3-BaTiO3. The effect of sintering conditions and microstructure on ceramics is shown to have a significant impact on the physical properties of these materials. Pellet inhomogeneity, air sensitivity in pre-calcined powders and the presence of parasitic grain boundary capacitances are all shown to have adverse effects on properties, including the magnitudes of relative permittivity and TC calculated from total capacitance data. These can be overcome by careful control of synthesis conditions. Dielectric spectroscopy measurements on the optimised materials show that increasing addition of SrZrO3, CaZrO3 or LaScO3 causes the phase transitions between the various polymorphs of BaTiO3 to coalesce. In each case TC is reduced whilst each of the other phase transitions is shifted to higher temperatures, until the coalescence temperature is reached. When doped with GdScO3 TC is observed to fall, but so too are the rhombohedral/orthorhombic and orthorhombic/tetragonal transitions, resulting in a stabilisation of the tetragonal polymorphic phase. This is suggested to result from an antipolar displacement of small Gd3+ ions, resulting in 8-coordinate ion and stabilisation of the tetragonal polymorph. The addition of dopant species is shown to result in two different high temperature conduction regimes. Both mechanisms are observed within single compositions over different temperature ranges. It is suggested that this is due to a change between n- and p-type electronic conduction processes or mixed ionic/electronic processes. Finally, it is shown that trends observed in changes to TC cannot be accounted for by simple and widely used size-based arguments alone, but requires consideration of cation size variance and charge dilution effects in order to fully understand the impact on TC of dopant addition.


Ceramic Abstracts

Ceramic Abstracts
Author:
Publisher:
Total Pages: 252
Release: 1998
Genre: Ceramics
ISBN:

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