Synthesis And Characterization Of Ferromagnetic Nanowires PDF Download

Are you looking for read ebook online? Search for your book and save it on your Kindle device, PC, phones or tablets. Download Synthesis And Characterization Of Ferromagnetic Nanowires PDF full book. Access full book title Synthesis And Characterization Of Ferromagnetic Nanowires.

Synthesis and Characterization of Ferromagnetic Nanowires

Synthesis and Characterization of Ferromagnetic Nanowires
Author: PoChing Tsai
Publisher:
Total Pages:
Release: 2010
Genre:
ISBN:

Download Synthesis and Characterization of Ferromagnetic Nanowires Book in PDF, ePub and Kindle

Ferromagnetic nanocrystals with shape anisotropy have drawn great attention in the past decades because of their unique magnetic properties and for their potential applications in ultra-high-density magnetic recording media, exchange-coupled nanocomposite magnets and related nanodevices. In this thesis, synthesis and characterixation of ferromagnetic CoNi and CoFe nanowires are reported. CoNi nanocrystals with different size, shape and composition were successfully synthesized via a catalyst chemical solution method. It was found out that the structure and morphology can be controlled by altering the NaOH concentration, and the elongation of the nanowires can be adjusted by changing surfactants ratio and catalyst amount. Unlike the CoNi, CoFe nanocrystals were prepared by a non-catalyst chemistry solution method. The particle size and shape are controlled by varying parameters such as solvent amount, surfactant ratio, reducing agent and heating rate. Morphological, structural, and compositional characterizations of the nanoparticles were performed by using Transmission Electron Microscopy (TEM), high resolution TEM (HRTEM), and X-Ray Diffractometer (XRD). Magnetic properties of nanoparticles of different size were studied by Alternating Gradiant Magnetometer (AGM).


Magnetic Nano- and Microwires

Magnetic Nano- and Microwires
Author: Manuel Vázquez
Publisher: Woodhead Publishing
Total Pages: 1012
Release: 2020-04-01
Genre: Technology & Engineering
ISBN: 0081028334

Download Magnetic Nano- and Microwires Book in PDF, ePub and Kindle

Magnetic Nano-and Microwires: Design, Synthesis, Properties and Applications, Second Edition, reviews the growth and processing of nanowires and nanowire heterostructures using such methods as sol-gel and electrodeposition, focused-electron/ion-beam-induced deposition, epitaxial growth by chemical vapor transport, and more. Other sections cover engineering nanoporous anodic alumina, discuss magnetic and transport properties, domains, domain walls in nano-and microwires. and provide updates on skyrmions, domain walls, magnetism and transport, and the latest techniques to characterize and analyze these effects. Final sections cover applications, both current and emerging, and new chapters on memory, sensor, thermoelectric and nanorobotics applications. This book will be an ideal resource for academics and industry professionals working in the disciplines of materials science, physics, chemistry, electrical and electronic engineering and nanoscience. Details the multiple key techniques for the growth, processing and characterization of nanowires and microwires Reviews the principles and difficulties involved in applying magnetic nano- and microwires to a wide range of applications, also including biomedical and sensing applications Discusses magnetism and transport in nanowires, skyrmions and domain walls in nanowires and the latest innovations in magnetic imaging


Nanowires

Nanowires
Author: Simas Rackauskas
Publisher: BoD – Books on Demand
Total Pages: 122
Release: 2019-04-10
Genre: Technology & Engineering
ISBN: 1789859050

Download Nanowires Book in PDF, ePub and Kindle

Nanowires are attracting wide scientific interest due to the unique properties associated with their one-dimensional geometry. Developments in the understanding of the fundamental principles of the nanowire growth mechanisms and mastering functionalization provide tools to control crystal structure, morphology, and the interactions at the material interface, and create characteristics that are superior to those of planar geometries. This book provides a comprehensive overview of the most important developments in the field of nanowires, starting from their synthesis, discussing properties, and finalizing with nanowire applications. The book consists of two parts: the first is devoted to the synthesis of nanowires and characterization, and the second investigates the properties of nanowires and their applications in future devices.


Synthesis and Characterization of Ferromagnetic Nanoparticles

Synthesis and Characterization of Ferromagnetic Nanoparticles
Author: Kazuaki Yano
Publisher: ProQuest
Total Pages:
Release: 2007
Genre: Materials science
ISBN: 9780549319962

Download Synthesis and Characterization of Ferromagnetic Nanoparticles Book in PDF, ePub and Kindle

Ferromagnetic nanoparticles and their bimagnetic nanoparticles with uniform size distribution have drawn great attention in the past decades because of their unique magnetic properties and potential applications in high density recording media, exchange-spring permanent magnets and biotechnology. In this thesis, synthesis and characterization of ferromagnetic nanoparticles (FePt, Sm-Co system) and bimagnetic nanoparticles (FePt/Fe3O4, FePt/Au) are reported. FePt nanoparticles with different sizes and compositions were successfully synthesized via chemical synthesis. FePt particle size was tuned to a range of from 3 nm to 8 nm with 1 nm accuracy by changing the surfactant to Pt precursor ratio. By optimizing the amount of Fe3O4 phase in exchange-coupled FePt/Fe3O4 nanoparticles, the highest (BH) max of 17.6 MGOe was achieved in 6 nm FePt/Fe3O 4 particles after proper annealing, which is 35% higher than 13 MGOe for single-phase isotropic FePt nanoparticles. As-synthesized FePt particles with average size of 8 nm were annealed using Rapid Thermal Annealing (RTA) treatment with various temperatures and time. It was found that FePt nanoparticles can be transferred from disordered A1 phase to ordered L10 phase in several seconds at above 600°C, which is much shorter than the time needed for furnace annealing. The transmission electronic microscopy (TEM) and X-ray diffraction studies revealed that the average particle size of RTA treated FePt nanoparticles is smaller than that of the furnace annealed particles and no excessive particle sintering and agglomeration were observed in the RTA treated particles. FePt/Au core/shell nanoparticles have been successfully synthesized using seed mediated chemistry. The high resolution TEM (HRTEM) with Selected Area Electron Diffraction (SAED) and Nano-Beam Diffraction (NBD) analyses confirmed the core/shell structure of FePt/Au nanoparticles. The VU-Vis measurement revealed that FePt/Au core/shell nanoparticles show a red shift of surface plasmon absorption band compared to pure Au nanoparticles. The FePt/Au core/shell nanoparticles showed ferromagnetism after annealing at optimum temperature. Moreover, the water soluble FePt/Au core/shell nanoparticles were achieved by ligands exchange. Sm-Co particles were prepared via surfactants-assisted ball milling and separated into slurries and nanoparticles by size selection process. As-milled particles were then annealed by different types of annealing techniques to improve the magnetic properties. XRD studies revealed that after forming gas and hydrothermal annealing the Sm-Co particles were oxidized and decomposed into Sm2O3 and magnetically soft phase (FeCo, Co), resulting in the decrease of coercivity. Coercivity of Sm2Co 17 slurries increased by vacuum annealing when the ball milling time is less than 5 h. Highest Hc of 7.5 kOe was achieved in 1 h ball-milled particles, which is 35% higher than the coercivity of non-annealed particles. For the nanoparticles, it was difficult to increase or even maintain the magnetic properties after annealing because of high oxidation affinity of nanoparticles.


Magnetic Nano- and Microwires

Magnetic Nano- and Microwires
Author: Manuel Vázquez
Publisher: Woodhead Publishing
Total Pages: 847
Release: 2015-05-27
Genre: Technology & Engineering
ISBN: 0081001819

Download Magnetic Nano- and Microwires Book in PDF, ePub and Kindle

Magnetic nanowires and microwires are key tools in the development ofenhanced devices for information technology (memory and data processing) andsensing. Offering the combined characteristics of high density, high speed, andnon-volatility, they facilitate reliable control of the motion of magnetic domainwalls; a key requirement for the development of novel classes of logic and storagedevices. Part One introduces the design and synthesis of magnetic nanowires andmicrowires, reviewing the growth and processing of nanowires and nanowireheterostructures using such methods as sol-gel and electrodepositioncombinations, focused-electron/ion-beam-induced deposition, chemicalvapour transport, quenching and drawing and magnetic interactions. Magneticand transport properties, alongside domain walls, in nano- and microwiresare then explored in Part Two, before Part Three goes on to explore a widerange of applications for magnetic nano- and microwire devices, includingmemory, microwave and electrochemical applications, in addition to thermalspin polarization and configuration, magnetocalorific effects and Bloch pointdynamics. Detailed coverage of multiple key techniques for the growth and processing of nanowires and microwires Reviews the principles and difficulties involved in applying magnetic nano- and microwires to a wide range of applications Combines the expertise of specialists from around the globe to give a broad overview of current and future trends


One-Dimensional Nanostructures

One-Dimensional Nanostructures
Author: Zhiming M Wang
Publisher: Springer Science & Business Media
Total Pages: 335
Release: 2008-07-20
Genre: Technology & Engineering
ISBN: 0387741321

Download One-Dimensional Nanostructures Book in PDF, ePub and Kindle

One-dimensional (1D) nanostructures, including nanowires, nanotubes and quantum wires, have been regarded as the most promising building blocks for nanoscale electronic and optoelectronic devices. This book presents exciting, state-of-the-art developments in synthesis and properties of 1D nanostructures with many kinds of morphologies and compositions as well as their considerable impact on spintronics, information storage, and the design of field-effect transistors.