Livres sur le sujet « POLYMER OXIDE »

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1

Center, Langley Research, dir. Summary of GPC/DV results for space exposed poly(arylene ether phosphine oxide)s. Hampton, Va : National Aeronautics and Space Administration, Langley Research Center, 1995.

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2

A, Banks Bruce, Hunt Jason et United States. National Aeronautics and Space Administration., dir. Reactively deposited aluminum oxide and fluoropolymer filled aluminum oxide protective coatings for polymers. [Washington, D.C.] : National Aeronautics and Space Administration, 1995.

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3

A, Banks Bruce, Hunt Jason et United States. National Aeronautics and Space Administration., dir. Reactively deposited aluminum oxide and fluoropolymer filled aluminum oxide protective coatings for polymers. [Washington, D.C.] : National Aeronautics and Space Administration, 1995.

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4

Bailey, Frederick E. Alkylene oxides and their polymers. New York : Dekker, 1991.

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5

T, Yoko, Saka S et United States. National Aeronautics and Space Administration., dir. Preparation of oxide glasses from metal alkoxides by sol-gel method. Washington, DC : National Aeronautics and Space Administration, 1988.

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6

Shilo, A. E. Oksidopolimernye materialy matrichnogo tipa. Kiev : Nauk. dumka, 1989.

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7

Inc, ebrary. Interaction of polymers with polluted atmosphere nitogen oxides. Shawbury, Shrewsbury, Shropshire, U.K : iSmithers, 2009.

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8

Mallik, Robert Ronnan. An investigation of polymeric adsorption on aluminium oxide by inelastic electron tunnelling spectroscopy. Leicester : Leicester Polytechnic, 1985.

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9

Center, Lewis Research, dir. Effects of surface area, polymer char, oxidation, and NiO additive on nitridation kinetics of silicon powder compacts. [Cleveland, Ohio] : National Aeronautics and Space Administration, Lewis Research Center, 1998.

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10

Tailoring the (bio)activity of polymeric and metal oxide nano- and microparticles in biotic and abiotic environments. [New York, N.Y.?] : [publisher not identified], 2012.

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11

J, Pesek Joseph, Leigh Ivan E, Royal Society of Chemistry (Great Britain). et Symposium on Chemically Modified Surfaces (5th : 1993 : Malvern, Penn.), dir. Chemically modified surfaces. Cambridge : Royal Society of Chemistry, 1994.

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12

Renewable Polymers and Polymer-Metal Oxide Composites. Elsevier, 2022. http://dx.doi.org/10.1016/c2020-0-01691-9.

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13

Haider, Sajjad, et Adnan Haider. Renewable Polymers and Polymer-Metal Oxide Composites : Synthesis, Properties, and Applications. Elsevier, 2022.

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14

Haider, Sajjad, et Adnan Haider. Renewable Polymers and Polymer-Metal Oxide Composites : Synthesis, Properties, and Applications. Elsevier, 2022.

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15

Owen, Steven Robert. Antimony oxide compounds for flame retardant ABS polymer. 1998.

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16

Toxicity studies of polymer based superparagnetic iron oxide nanoparticles. España : Prensas de la Universidad de Zaragoza, 2015.

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17

Andriotis, A. N., R. M. Sheetz, E. Richter et M. Menon. Structural, electronic, magnetic, and transport properties of carbon-fullerene-based polymers. Sous la direction de A. V. Narlikar et Y. Y. Fu. Oxford University Press, 2017. http://dx.doi.org/10.1093/oxfordhb/9780199533053.013.21.

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This article discusses the structural, electronic, magnetic, and transport properties of carbon-fullerene-based polymers. In particular, it examines the defect-induced ferromagnetism of the C60-based polymers and its analog in the case of non-traditional inorganic materials. It first reviews the computational methods currently used in the literature, highlighting the pros and cons of each one of them. It then considers the defects associated with the ferromagnetism of the C60-based polymers, namely carbon vacancies, the 2 + 2 cycloaddition bonds and impurity atoms, and their effect on the electronic structure. It also evaluates the effect of codoping and goes on to describe the electronic, magnetic and transport properties of the rhombohedral C60-polymer. Finally, it looks at the origin of magnetic coupling among the magnetic moments in the rhombohedral C60-polymer and provides further evidence for the analogy between the magnetism of the rhombohedral C60-polymer and zinc oxide.
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18

Synthesis and characterization of oriented nanowires : Electrocrystallization of tetrathiafulvalene bromide at polymer-modified indium tin oxide surfaces. Ottawa : National Library of Canada, 2002.

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19

Priknant, Warawudh. Synthesis and reactivity of polymer-supported n-butyl tin oxide as an acyl-transfer catalyst and synthesis and reactivity of polymer-supported diorgano tin o-neopentyl dithiocarbonates in free radical syntheses. 1996.

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20

Jolivet, Jean-Pierre. Metal Oxide Nanostructures Chemistry. Oxford University Press, 2019. http://dx.doi.org/10.1093/oso/9780190928117.001.0001.

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This much-anticipated new edition of Jolivet's work builds on the edition published in 2000. It is entirely updated, restructured and increased in content. The book focuses on the formation by techniques of green chemistry of oxide nanoparticles having a technological interest. Jolivet introduces the most recent concepts and modelings such as dynamics of particle growth, ordered aggregation, ionic and electronic interfacial transfers. A general view of the metal hydroxides, oxy-hydroxides and oxides through the periodic table is given, highlighting the influence of the synthesis conditions on crystalline structure, size and morphology of nanoparticles. The formation of aluminum, iron, titanium, manganese and zirconium oxides are specifically studied. These nanomaterials have a special interest in many technological fields such as ceramic powders, catalysis and photocatalysis, colored pigments, polymers, cosmetics and also in some biological or environmental phenomena.
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21

Alkylene Oxides and Their Polymers. Taylor & Francis Group, 2020.

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22

Bailey, F. E., et Joseph V. Koleske. Alkylene Oxides and Their Polymers. Taylor & Francis Group, 2020.

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23

Bailey, F. E. Alkylene Oxides and Their Polymers. Taylor & Francis Group, 2019.

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24

Bailey, F. E., et Joseph V. Koleske. Alkylene Oxides and Their Polymers. Taylor & Francis Group, 2020.

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25

Bailey, F. E., et Joseph V. Koleske. Alkylene Oxides and Their Polymers. Taylor & Francis Group, 2020.

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26

National Aeronautics and Space Administration (NASA) Staff. Reactively Deposited Aluminum Oxide and Fluoropolymer Filled Aluminum Oxide Protective Coatings for Polymers. Independently Published, 2018.

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27

Banerjee, Diptonil, Amit Kumar Sharma et Nirmalya Sankar Das. Nano Materials Induced Removal of Textile Dyes from Waste Water. BENTHAM SCIENCE PUBLISHERS, 2022. http://dx.doi.org/10.2174/97898150502951220101.

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Nanotechnology has progressed to the point where it can mimic natural systems such as porous membranes or the structure of leaves. Technological advances have resulted in a boom in the use of nanotechnology in different areas of engineering, including water purification systems. This book explores nanomaterials used for removing various textile dyes from water. It compiles 8 chapters that discuss the materials and nano systems used in these processes. This reference is designed to provide answers to common questions for scholars, academicians and technologists about fundamentals of nanoscience and nanomaterial induced removal of textile dyes. College students (physics, chemistry and materials science, engineering) will be able to easily understand the subject matter. Key Features: Covers the basics of nano systems, from synthesis to applications Explains the basics of nanomaterial behavior and characterization Describes the classifications of dyes Explains the interactions nanomaterials with different dyes Explains the reaction mechanisms of photocatalysis and the kinetics behind adsorption two important methods for removing dyes from water Discusses nano systems that are useful for textile dye removal from water. 3 types of nano systems are included: carbon based, oxide based, polymer based or nitride based systems Includes references for further reading Simple presentation for easy and quick understanding of the subject
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28

Carbon Monoxide Sensing Technologies. Materials Research Forum LLC, 2021. http://dx.doi.org/10.21741/9781644901212.

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The book covers the sensing and monitoring of poisonous carbon monoxide pollution in the environment. The sensors covered include semiconducting metal oxides, carbon nanotubes, conducting polymeric thin films, sensors based on colorimetric detection, non-dispersive infrared sensors, electrochemical sensors and photoacoustic detectors.
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29

Misono, M. Heterogeneous Catalysis of Mixed Oxides : Perovskite and Heteropoly Catalysts. Elsevier, 2013.

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30

Misono, M. Heterogeneous Catalysis of Mixed Oxides : Perovskite and Heteropoly Catalysts. Elsevier, 2013.

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31

Polymeric micelles : A study of the colloidal properties of polystyrene-poly(ethylene-oxide) block copolymers in aqueous solution. Ottawa : National Library of Canada = Bibliothèque nationale du Canada, 1993.

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32

Vrinceanu, Narcisa, Emanuela Ciolan et Paraschiva Postolache. Novel Approach of Added-Value Zinc Oxide Powders for Polymeric Fibrous Matrices with Engineered Architectures for High Performance Textiles. Nova Science Publishers, Incorporated, 2015.

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33

Chen, Zhanwen. Materials Science and Manufacturing Engineering. Trans Tech Publications, Limited, 2021.

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34

Materials Science and Manufacturing Engineering. Trans Tech Publications, Limited, 2021.

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35

Functional Materials : Fundamental Research and Industrial Application. Trans Tech Publications, Limited, 2021.

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