4 edition of Inorganic high-energy oxidizers: synthesis, structure and properties found in the catalog.
Inorganic high-energy oxidizers: synthesis, structure and properties
Edward W. Lawless
Bibliography: p. 235-285.
|Statement||[by] Edward W. Lawless and Ivan C. Smith.|
|Contributions||Smith, Ivan C., joint author.|
|LC Classifications||TP159.O9 L3 1968b|
|The Physical Object|
|Pagination||x, 304 p.|
|Number of Pages||304|
|LC Control Number||70467827|
The collaboration of nanoscience with heterogeneous nanocatalysis helps in the development of new catalysts with novel properties for various reactions, involving energy-intensive processes such as carbon monoxide oxidation on gold/metal oxide catalysts, hydrogen peroxide synthesis from hydrogen and oxygen, and methanol synthesis from carbon monoxide and carbon dioxide. Praise for the First Edition: Very useful for researchers in solid-state chemistry and as a textbook of advanced inorganic chemistry for PhD students. -Advanced Materials. This book provides unified coverage of the structure, properties, and synthesis of transition metal oxides. Written by two world-class scientists, it offers both an excellent window on modern solid-state chemistry and a.
The iron oxide nanoparticles are formed by the coprecipitation reaction of ferrous and ferric salts with inorganic bases. A strong base, NaOH, and a comparatively mild base, NH 4 OH, have been used with each surfactant to observe whether the basicity influences the crystallization process during particle by: We have synthesized poly(3-hexylthiophene) (P3HT) from initiator monolayers covalently bound to TiO 2 nanotubes fabricated inside nanoscale porous aluminum oxide templates. Much larger density of P3HT is achieved than by infiltration of the pores with P3HT synthesized outside the template. In addition, much lower photoluminescence efficiency is observed for the structure where P3HT is grown in Cited by:
The catalytic properties of the metal oxides extend their applicability in propellant manufacturing as burn rate modifiers. The relation between the structure and properties (both physical and chemical) of metal oxides and their applications are of great importance. 3 Metal oxides preparation by the classical solid-state reaction requires a Cited by: 2. We report on the synthesis and the optical properties of several novel semiconductors (R–NH 3) 2 PbX 4 (X = Br −, I − or Cl −).These semiconductors are two-dimensional organic–inorganic perovskite (2DOIP) materials and have multiple quantum-well energy level by:
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Synthesis, Structure, and Properties of Organic‐Inorganic Perovskites and Related Materials David B. Mitzi IBM T. Watson Research Center, P. BoxYorktown Heights, NYCited by: Additional Physical Format: Online version: Lawless, Edward W. Inorganic high-energy oxidizers: synthesis, structure, and properties.
New York, M. Dekker, Inorganic Hydrazine Derivatives: Synthesis, Properties and Applications presents a comprehensive review of the research carried out in this field during the last four decades. Methods for synthesizing inorganic hydrazine derivatives and complexes are systematically presented, together with details of their characterization, spectra, thermal analysis, crystal structure, and Inorganic high-energy oxidizers: synthesis Wiley.
Get structure and properties book from a library. Inorganic high-energy oxidizers: synthesis, structure and properties.
[Edward W Lawless; Ivan C Smith]. A novel LiNbO3-type (LN-type) lead zinc oxide, PbZnO3, was successfully synthesized under high pressure and temperature. Rietveld structure refinement using synchrotron powder X-ray diffraction (XRD) data demonstrated that LN-type PbZnO3 crystallized into a trigonal structure with a polar space group (R3c).
The bond valence sum estimated from the interatomic distances indicated that the Cited by: Inorganic Hydrazine Derivatives: Synthesis, Properties and Applications presents a comprehensive review of the research carried out in this field during the last four decades.
Methods for synthesizing inorganic hydrazine derivatives and complexes are systematically presented, together with details of their characterization, spectra, thermal.
High-Pressure Synthesis, Crystal Structure, and Phase Stability Relations of a LiNbO3-Type Polar Titanate ZnTiO3 and Its Reinforced Polarity by the Second-Order Jahn–Teller Effect. Journal of the American Chemical Society(7), Cited by: A series of layered oxychalcogenide and oxypnictide solids is described that contain oxide layers separated by distinct layers, which contain the softer chalcogenide (S, Se, Te) or pnictide (P, As, Sb, Bi) anions.
The relationships between the crystal structures adopted by these compounds are described, and the physical and chemical properties of these materials are related to the structures Cited by: Inorg. Chem. All Publications/Website. OR SEARCH CITATIONS. Synthesis of Inorganic Nanomaterials: Advances and Key Technologies discusses the latest advancements in the synthesis of various types of nanomaterials.
The book's main objective is to provide a comprehensive review regarding the latest advances in synthesis protocols that includes up-to-date data records on the synthesis of all kinds of inorganic nanostructures using various.
The inorganic cores possess useful properties that are controlled by their composition, size and shape, and the surfactant coating ensures that Cited by: 1. Introduction. Recently, conducting oxide materials have been studied for application of electronic devices such as thin-film transistors (TFTs), organic light emitting diodes (OLEDs), sensors, and memory devices.Since many of conducting oxides also have high transparency to visible light, they have been applied as transparent conducting oxide (TCO) active layer for display applications.
The purpose of this program was to explore the synthesis and properties of energetic inorganic halogen oxidizers. Although the program was directed toward basic research, applications of the. Authored by a leading figure in the field, this book systematically describes all the fundamental aspects and applications of inorganic nanostructures from zero to three dimensions.
It not only discusses various synthesis technologies, but also covers the physical properties of inorganic nanostructures, such as optical, electric and magnetic properties, and practical applications such as Author: Huaqiang Cao.
Since its discovery ingraphene has been a great sensation due to its unique structure and unusual properties, and it has only taken 6 years for a Noble Prize to be awarded for the field of graphene research.
This monograph gives a well-balanced overview on all areas of scientific interest surrounding this fascinating nanocarbon. In one handy volume it offers comprehensive Format: Hardcover.
This book provides unified coverage of the structure, properties, and synthesis of transition metal oxides. Written by two world-class scientists, it offers both an excellent window on modern solid-state chemistry and a gateway to understanding the behavior of inorganic by: Design of organic–inorganic solid polymer electrolytes: synthesis, structure, and properties Lyudmila M.
Bronstein,* a Robert L. Karlinsey, a Kyle Ritter, † a Chan Gyu Joo. Synthesis, Properties and Mineralogy of Important Inorganic Materials ().pdf writen by Terence E.
Warner: Intended as a textbook for courses involving preparative solid-state chemistry, this book offers clear and detailed descriptions on how to prepare a selection of inorganic materials. A top-down approach for the synthesis of metal oxide particles with in situ surface functionalization is used to modify titania with long alkyl chain organophosphorus coupling agents.
A high energy planetary ball mill was used to perform reactive milling using titania as inorganic pigment and long alkyl chain organophosphorus coupling agents. Spectroscopic Properties of Inorganic and Organometallic Compounds: Techniques, Materials and Applications provides a unique source of information in an important area of chemistry.
Since Volume 40 the nature and ethos of this series have been altered to reflect a change of emphasis towards 'Techniques, Materials and Applications'. Researchers will now find up-to-date critical reviews which. Oxide-based inorganic/organic and nanoporous spherical particles: synthesis and functional properties.
Kota Shiba 1, Motohiro Tagaya 2, Richard D Tilley 3 and Nobutaka Hanagata 4. Published 26 April • National Institute for Materials Science Science and Technology of Advanced Materials, Vol Number 2Cited by: Nicola Hüsing, PhD, was appointed Professor of Materials Chemistry at the Paris-Lodron University of Salzburg, Austria in Her research interests focus on the liquid phase synthesis of porous materials, inorganic-organic hybrid materials and mesoscopically organized systems, especially with respect to synthesis-structure-property relations.With this handbook the distinguished team of editors has combined the expertise of leading nanomaterials scientists to provide the latest overview of this field.
The authors cover the whole spectrum of nanomaterials, ranging from theory, synthesis, properties, characterization to application, including such new developments as: quantum dots, nanoparticles, nanoporous materials, as well as.