Synthesis and Characterization of Nanophase Zirconia

Synthesis and Characterization of Nanophase Zirconia PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 5

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Book Description
Zirconia is an important transition-metal oxide for catalytic applications. It has been widely used in automotive exhaust treatment, methanol synthesis, isomerization, alkylation, etc. [1]. Nanophase materials have unique physiochemical properties such as quantum size effects, high surface area, uniform morphology, narrow size distribution, and improvement of sintering rates[2]. Microemulsion method provides the means for controlling the microenvironment under which specific chemical reactions may occur in favoring the formation of homogeneous, nanometer-size particles. In this paper, we report the synthesis of nanophase zirconia and the characterization of the microemulsions as well as the powders by small- and wide-angle neutron scattering techniques.

Synthesis and Characterization of Nanophase Zirconia

Synthesis and Characterization of Nanophase Zirconia PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 5

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Book Description
Zirconia is an important transition-metal oxide for catalytic applications. It has been widely used in automotive exhaust treatment, methanol synthesis, isomerization, alkylation, etc. [1]. Nanophase materials have unique physiochemical properties such as quantum size effects, high surface area, uniform morphology, narrow size distribution, and improvement of sintering rates[2]. Microemulsion method provides the means for controlling the microenvironment under which specific chemical reactions may occur in favoring the formation of homogeneous, nanometer-size particles. In this paper, we report the synthesis of nanophase zirconia and the characterization of the microemulsions as well as the powders by small- and wide-angle neutron scattering techniques.

Advanced Synthesis of Gold and Zirconia Nanoparticles and Their Characterization

Advanced Synthesis of Gold and Zirconia Nanoparticles and Their Characterization PDF Author: Stephan Dankesreiter
Publisher: Diplomica Verlag
ISBN: 383669199X
Category : Science
Languages : en
Pages : 173

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Book Description
The development of small and smallest particle is one of today's key features in modern science. The goal is to form materials with improved properties than their "classical" ancestors with just a fractional amount of raw material. However, the characterization of these particles is as important as their way of preparation. Different techniques with their origins in physics, inorganic, organic and physical chemistry have to be combined to reveal the secrets of this important field of science. This book gives a short overview of theoretical basics and synthesis methods to form and characterize gold and zirconia nanoparticles. Phenomenon like plasmon resonance self-assembly of surfactants and the different structures of ZnO2 are explained. Furthermore, analytical tools, like small angle X-ray scattering, X-ray powder diffraction and scanning electron microscopy are introduced. In addition, details on the synthesis of gold and zirconia nanoparticles are presented and are examined by the mentioned analytical and calorimetric methods.

The Synthesis and Characterization of Nano-sized Rare Earth Oxide Particles and Mesoporous Zirconia

The Synthesis and Characterization of Nano-sized Rare Earth Oxide Particles and Mesoporous Zirconia PDF Author: Atilla Aşar
Publisher:
ISBN:
Category : Mesoporous materials
Languages : en
Pages : 150

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Synthesis and Characterization of a Chelator Modified Zirconia Support for Biochromatographic Applications

Synthesis and Characterization of a Chelator Modified Zirconia Support for Biochromatographic Applications PDF Author: Andrew Michael Clausen
Publisher:
ISBN:
Category :
Languages : en
Pages : 378

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Synthesis and Characterization of Mesoporous Zirconia and Aluminated Mesoporous Zirconia

Synthesis and Characterization of Mesoporous Zirconia and Aluminated Mesoporous Zirconia PDF Author: Elizabeth Zhao
Publisher:
ISBN:
Category : Chemistry, Physical and theoretical
Languages : en
Pages : 270

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Synthesis and Characterization of Zirconia Nanoparticles with Mixed Ligand Shells by Solid-state NMR Methods and Dispersions of Polymer Functionalized Gold Nanoparticles in Nematic Liquid Crystals

Synthesis and Characterization of Zirconia Nanoparticles with Mixed Ligand Shells by Solid-state NMR Methods and Dispersions of Polymer Functionalized Gold Nanoparticles in Nematic Liquid Crystals PDF Author: Safiya Allie
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Book Description
" This thesis concerns the characterization of nanoparticles and liquid crystal nanocomposites. Two types of nanoparticles were prepared: zirconia nanoparticles were functionalized with different ratios of dodecyl- and phenyl- phosphonic acids as a model system for developing a NMR-based characterization method to determine the spatial distribution of the ligands. This study was motivated by the finding that successful dispersions of nanoparticles in liquid crystals often requires mixed ligand shells and it assumed that there is a homogeneous distribution of the two ligands. Secondly, more readily prepared polymer functionalized gold nanoparticles were tested as an alternative to mixed ligand shells of low molar mass mesogenic ligands to achieve stable dispersions in a nematic liquid crystal. Spin diffusion NMR experiments developed for heterogeneous polymeric materials were used as a novel surface characterization method for nanoparticles with mixed ligand shells. 1D solid-state 31P and 1H NMR spectroscopy, respectively used to characterize the surface binding and ligand shell composition, showed that the compositions of the strongly bound ligand shells matched the reaction ratios. The spatial proximities of the dodecyl and phenyl groups were probed by 2D 1H-13C Heteronuclear Correlation (HETCOR) and 1H Double Quantum (DQ) NMR experiments. The HETCOR and 1H DQ NMR experiments indicate a significant population of dodecyl- and phenyl- phosphonic acids are nearest neighbors which would be consistent with molecular level mixing on the nanoparticle surface. However the proton spin diffusion experiments indicate the presence of some type of phase separation. This finding is significant since previous studies of mixed phosphonic acid monolayers in the literature assume a homogeneous distribution. The analysis of the spin diffusion build up curves yielded domain sizes on the order of ~ 4-5 nm which appear to be too large given the nanoparticle dimensions. Control experiments point towards an overestimate of the spin diffusion coefficients since these experiments were originally developed for the extended proton-proton dipolar coupling networks found in polymers. Gold nanoparticles, AuNPs, functionalized with 2000 MW thiolated poly(ethylene oxide), PEO-SH, were dispersed in a common nematic liquid crystal, 4-cyano-4'-pentylbiphenyl (5CB). Dispersions of free PEO, 2000 MW, in 5CB were also prepared. The two types of blends were characterized by polarized optical microscopy (POM) and differential scanning calorimetry (DSC). Relatively high concentrations of 10 wt. %, 20 wt. % and 50 wt. % AuNPs-PEO in 5CB were investigated. The dispersions were all characterized by POM by cooling from the isotropic state to erase all thermal history. Both the AuNP-PEOs and PEO alone are completely miscible in isotropic 5CB to very high concentrations. Whereas the free PEO significantly lowers the isotropic to nematic (I-N) phase transition temperature of 5CB, the AuNP-PEOs only cause a small change, similar to previously studied AuNPs with mesogenic ligands. Below the I-N transition, both the polymer and AuNP dispersions display a biphasic state over a wide temperature range. For higher concentrations (> 10 wt. % PEO), PEO spherulite crystallization nucleates the nematic phase of 5CB. At lower PEO concentrations, the I-N transition of 5CB precedes PEO crystallization which shows a dendritic morphology. The AuNP-PEOs form a cellular network which shares similarities with that formed by AuNPs with mesogenic ligands. Differences in the network morphologies are attributed to the stronger disordering effect of the polymer ligands on the nematic structure as compared to the mesogenic ligands. " --

Chemistry of Nanocrystalline Oxide Materials

Chemistry of Nanocrystalline Oxide Materials PDF Author: K. C. Patil
Publisher: World Scientific
ISBN: 9812793143
Category : Science
Languages : en
Pages : 362

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Book Description
Nano-oxide materials lend themselves to applications in a wide variety of emerging technological fields such as microelectronics, catalysts, ceramics, coatings, and energy storage. However, developing new routes for making nano-based materials is a challenging area for solid-state materials chemists. This book does just that by describing a novel method for preparing them. The authors have developed a novel low-temperature, self-propagating synthetic route to nano-oxides by the solution combustion and combustible precursor processes. This method provides the desired composition, structure, and properties for many types of technologically useful nanocrystalline oxide materials like alumina, ceria, iron oxides, titania, yttria, and zirconia, among others.The book is particularly instructive in bringing readers one step closer to the exploration of nanomaterials. Students of nanoscience can acquaint themselves with the actual production and evaluation of nanopowders by this route, while academic researchers and industrial scientists will find answers to a host of questions on nano-oxides. The book also provides an impetus for scientists in industrial research to evaluate and explore new ways to scale up the production of nanomaterials, offering helpful suggestions for further research.

Synthesis and Characterization of Zirconia Aerogels

Synthesis and Characterization of Zirconia Aerogels PDF Author: Azghar H. Khazi-Syed
Publisher:
ISBN:
Category :
Languages : en
Pages : 168

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Synthesis and Characterization of Zirconium-N-alkylphenothiazine Complexes

Synthesis and Characterization of Zirconium-N-alkylphenothiazine Complexes PDF Author: Qazi Tauseef Ahmed
Publisher:
ISBN:
Category : Zirconium compounds
Languages : en
Pages : 176

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Synthesis and Characterization of Nickel Doped Zirconia

Synthesis and Characterization of Nickel Doped Zirconia PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Book Description
The present work deals with effect of particle size, concentration of nickel, and calcination temperature on the enhancement of tetragonal zirconia nanopowders. Nanocrystalline tetragonal zirconia is commercially very significant material which finds extensive use as an anode material in SOFC, as a catalyst oxygen sensor and structural material. In the present project work, nanocrystalline zirconia powders were prepared by co-precipitation technique. This technique is very helpful for the promotion of the stabilization of t-phase of ZrO2 at nano level at moderate temperature which is one of the primary objectives of this project. Here the main objective is to stabilize the t-ZrO2 through precipitation route using NH4OH. The concentration of nickel-salt plays an important role for the enhancement of stabilized tetragonal phase at moderate temperature. From XRD results it has been concluded that stabilization of t-ZrO2 was better for 20 mol% nickel-salt concentration as compared with 40 mol% Ni-salt at the same temperature.