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Preparation structure

Subsequent chapters deal with individual classes of plastics. In each case a review is given of the preparation, structure and properties of the material. In order to prevent the book from becoming too large I have omitted detailed discussion of processing techniques. Instead, with each major class of material an indication is given of the main processing characteristics. The applications of the various materials are considered in the light of the merits and the demerits of the material. [Pg.929]

Carbon nanotubes have the same range of diameters as fullerenes, and are expeeted to show various kinds of size effeets in their struetures and properties. Carbon nanotubes are one-dimensional materials and fullerenes are zero-dimensional, whieh brings different effects to bear on their structures as well as on their properties. A whole range of issues from the preparation, structure, properties and observation of quantum effeets in carbon nanotubes in eomparison with 0-D fullerenes are diseussed in this book. [Pg.190]

N. Burford, j. Passmore and J. C. P. Sanders, Chap. 2, Preparation, Structure and Energetics of the Homopoly-atomic Cations of Groups 16 and 17, in J. F. Liebman and A. Greenburg (eds.). From Atoms to Polymers Isoelec-tronic Analogies, VCH PubL, Honda, 1989, pp. 53-108. J. Passmore, Chap. 19 Homopolyatomic Selenium Cations... [Pg.759]

The known compounds are summarized in Table 16.5 which also lists their colour, mp, bp and decomposition temperature where these have been reported. It will be convenient to discuss the preparation, structure and chemical properties of these various compounds approximately in... [Pg.768]

Whereas there had been a significant amount of work on the properties of lithium alloys in the research community for a number of years, this alternative did not receive much attention in the commercial world until about 1990, when Sony began producing batteries with lithium-carbon negative electrodes. Since then, there has been a large amount of work on the preparation, structure, and properties of various carbons in lithium cells. [Pg.359]

Ward, I. M. The Preparation, Structure and Prooperties of Ultra-High Modulus Flexible Polymers. Vol. 70, pp. 1 —70. [Pg.162]

Preparation, structures and properties of vanadium(II) halides and complex halides. C. Cros, Rev. Inorg. Chem., 1979, 1,165-204 (93). [Pg.63]

Methinyltricobait enneacarbonyl compounds preparation, structure and properties. G. Palyi, F. Piacenti and L. Marko, Inorg. Chim. Acta, Rev., 1970, 4,109-121 (94). [Pg.65]

The most important mercury chalcogenide halides are of the type HgaYjXj (Y = S, Se, Te X = Cl, Br, I). The corresponding sulfide halides have been known for over 150 years (326). Quite a lot of work has been performed concerning the preparation, structures, electronic and optical properties, and phototropic behavior of these compounds. Mercury chalcogenide halides of other compositions have been mentioned in the literature (141). As most of these compounds are not well established, they will not be treated in detail, with the exception of the latest contributions (see Table V). [Pg.351]

The problem of the thermally induced polymerization reaction of partially or completely substituted cyclophosphazenes has been considered in the past by several authors [355-357], and more recently by H. R. AUcock [358]. This is because of the ease of synthesizing these substrates, the possibihty of preparing structurally regulated poly(organophosphazenes), and the lack of any additional nucleophilic substitution processes on the poly(organophosphazenes) obtained by the ROP process of fully saturated trimers. [Pg.181]

Singh RP, Singh SL, Chandra S (1986) Electrodeposited semiconducting CulnSe2 films. I. Preparation, structural and electrical characterisation. J Phys D Appl Phys 19 1299-1309... [Pg.147]

Compound Method of preparation Structural unit Physical properties... [Pg.63]

Yamashita M (2007) Preparation, Structure, and Biological Properties of Phosphorus Heterocycles with a C - P Ring System. 8 173-222... [Pg.313]

Recent Progress in Bimetallic Nanoparticles Their Preparation, Structures and Functions... [Pg.49]

Tsigdinos, G. A. Sulfur Compounds of Molybdenum and Tungsten. Their Preparation, Structure, and Properties. 76, 65-105 (1978). [Pg.168]

Volume 128. Plasma Lipoproteins (Part A Preparation, Structure, and Molecular Biology)... [Pg.20]

Polymeric (isocyanide)gold(i) aryls ( gold oligo-phenylene-ethynylene-isonitriles ) were tested as electrical conductors at metal-molecule-metal junctions (7r-conjugated molecular wires), but the preparation, structure, and properties of the materials were not fully disclosed (Scheme 52).218... [Pg.283]

Braun, T. (1997) Water soluble fullerene-cyclodextrin suframolecular assemblies preparation, structure, properties (an annotated bibliography). Fullerene Sci. Technol. 5, 615-626. [Pg.1050]

L Preparation Structure method6 type6 Coordination mode d(M - M)/A Ref. [Pg.448]

Hudson, H.R., Rees, R.G., and Weekes, J.E., Preparation, structure, and nuclear magnetic resonance spectroscopy of triphenyl and trineopentyl phosphite alkyl halide adducts, /. Chem. Soc., Perkin I, 982, 1974. [Pg.85]

CF2 is unique among carbenes because of its high stability and low reactivity. Investigations of the ultraviolet absorption spectrum of CF2 have led to estimates of roughly 10 milliseconds to one minute for the half-life of CF2 at pressures in the region of one atmosphere. The gas phase molecule does not react with BF3, N20, S02, CS2 or CF3I at 120 °C5 K The nature of CF2 is perhaps best presented in separate sections discussing its preparation, structure and physical properties, reaction chemistry, and reaction kinetics. [Pg.6]


See other pages where Preparation structure is mentioned: [Pg.952]    [Pg.952]    [Pg.397]    [Pg.536]    [Pg.2]    [Pg.637]    [Pg.491]    [Pg.135]    [Pg.319]    [Pg.257]    [Pg.258]    [Pg.99]    [Pg.180]    [Pg.458]    [Pg.234]    [Pg.34]    [Pg.57]    [Pg.66]    [Pg.544]    [Pg.117]    [Pg.47]    [Pg.78]   
See also in sourсe #XX -- [ Pg.253 ]




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Preparation and Molecular Structure

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Preparation and Structure of Polymer-capped Bimetallic Nanoclusters

Preparation and Structure of Sugar Formazans

Preparation and Structure of Sulphimides

Preparation and Structure of Vesicles

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Ring size, structure preparation

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Sample preparation surface structure

Site Preparation and Structures

Structural Foam Preparation

Structural foams preparation method

Structure and Physicochemical Properties of Polyalkylsiloxane Monolayers Prepared onto the Solid Substrate

Structure, Preparation, and Detection of Iminium Salts

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Structures preparing

Structures preparing

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