Hybrid Nanocomposites : (Record no. 74357)
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fixed length control field | 06751cam a2200613Ki 4500 |
001 - CONTROL NUMBER | |
control field | 9780429000966 |
005 - DATE AND TIME OF LATEST TRANSACTION | |
control field | 20220531132602.0 |
006 - FIXED-LENGTH DATA ELEMENTS--ADDITIONAL MATERIAL CHARACTERISTICS | |
fixed length control field | m o d |
008 - FIXED-LENGTH DATA ELEMENTS--GENERAL INFORMATION | |
fixed length control field | 190315s2019 si ob 001 0 eng d |
040 ## - Cataloging Source | |
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020 ## - INTERNATIONAL STANDARD BOOK NUMBER | |
International Standard Book Number | 9780429000966 |
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International Standard Book Number | 0429000960 |
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International Standard Book Number | 9780429671159 |
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International Standard Book Number | 0429671156 |
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International Standard Book Number | 9780429672644 |
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International Standard Book Number | 0429672640 |
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020 ## - INTERNATIONAL STANDARD BOOK NUMBER | |
International Standard Book Number | 9780429669668 |
-- | (electronic bk. : Mobipocket) |
020 ## - INTERNATIONAL STANDARD BOOK NUMBER | |
International Standard Book Number | 0429669666 |
-- | (electronic bk. : Mobipocket) |
020 ## - INTERNATIONAL STANDARD BOOK NUMBER | |
Canceled/invalid ISBN | 9789814800341 |
020 ## - INTERNATIONAL STANDARD BOOK NUMBER | |
Canceled/invalid ISBN | 9814800341 |
035 ## - SYSTEM CONTROL NUMBER | |
System control number | (OCoLC)1089930855 |
Canceled/invalid control number | (OCoLC)1089981164 |
035 ## - SYSTEM CONTROL NUMBER | |
System control number | (OCoLC-P)1089930855 |
050 #4 - LIBRARY OF CONGRESS CALL NUMBER | |
Classification number | TA418.9.N35 |
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245 00 - TITLE STATEMENT | |
Title | Hybrid Nanocomposites : |
Remainder of title | Fundamentals, Synthesis, and Applications / |
Statement of responsibility, etc. | edited by Kaushik Pal. |
264 #1 - | |
-- | Singapore : |
-- | Pan Stanford Publishing, |
-- | 2019. |
300 ## - PHYSICAL DESCRIPTION | |
Extent | 1 online resource. |
336 ## - | |
-- | text |
-- | txt |
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-- | computer |
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338 ## - | |
-- | online resource |
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505 0# - | |
-- | Cover; Half Title; Title Page; Copyright Page; Table of Contents; Preface; 1: Graphene-Based Polymer Nanocomposites for Sensor Applications; 1.1 Introduction; 1.2 Graphene-Based Polymer Nanocomposites; 1.3 Synthesis of Graphene-Assembled Polymer Nanocomposites; 1.3.1 Solution Blending; 1.3.2 Melt Blending; 1.3.3 In situ Polymerization; 1.4 Varieties of Graphene-Based Polymer Nanocomposites; 1.4.1 Graphene/Polyaniline Nanocomposites; 1.4.2 Graphene/Poly(3,4-Ethylene Dioxythiophene); 1.4.3 Graphene/Epoxy Nanocomposites; 1.4.4 Graphene/Polystyrene Nanocomposites |
505 8# - | |
-- | 1.4.5 Graphene/Polyurethane Nanocomposites1.4.6 Graphene/Poly(Vinyl Alcohol) Nanocomposites; 1.4.7 Graphene/Polyethylene Terephthalate Nanocomposites; 1.4.8 Graphene/Polycarbonate Nanocomposites; 1.4.9 Graphene/Poly(Vinylidene Fluoride) Nanocomposites; 1.4.10 Graphene/Nafion Nanocomposites; 1.4.11 Graphene/Carbon Nanotube-Polymer Nanocomposites; 1.4.12 Typical Graphene-Based Polymer Composites; 1.5 Applications of Graphene-Based Polymer Composites; 1.5.1 Sensors Applications; 1.5.2 Gas Sensors; 1.5.3 Applications of Biosensors, Optical Sensors, and Calorimetric Sensors |
505 8# - | |
-- | 1.6 Conclusions, Outlook, and Future Scope2: Facile Synthesis and Applications of Polyaniline/TiO2 Hybrid Nanocomposites; 2.1 Introduction; 2.1.1 Conducting Polymers; 2.1.2 Nanocomposites of Conducting Polymers; 2.1.2.1 Building block approach; 2.1.2.2 In situ approach; 2.1.3 Polyaniline; 2.1.3.1 Structure of polyaniline; 2.1.3.2 Synthesis of polyaniline; 2.1.4 Titanium Dioxide; 2.1.4.1 Structure of TiO2; 2.2 PANI/TiO2 Hybrid Nanocomposites; 2.2.1 Different Structures of PANI/TiO2 Hybrid Nanocomposites; 2.2.2 Synthesis of PANI/TiO2 Hybrid Nanocomposites; 2.2.2.1 Chemical methods |
505 8# - | |
-- | 2.2.2.2 In situ polymerization2.2.2.3 The electrochemical method; 2.2.2.4 Enzymatic synthesis; 2.2.2.5 The self-assembly method; 2.2.2.6 Template polymerization; 2.2.2.7 Gamma irradiation; 2.2.2.8 The microemulsion method; 2.2.2.9 The inverse emulsion method; 2.2.2.10 One-pot polymerization; 2.2.3 Effect of Surfactants; 2.3 Properties of Hybrid Composites; 2.3.1 Optical/Photocatalytic Properties; 2.3.2 Electrical/Dielectric Properties; 2.4 Applications of PANI/TiO2 Composites; 2.4.1 Photocatalysis; 2.4.2 Smart Corrosion-Resistant Coatings; 2.4.3 Sensors; 2.4.4 Energy Storage Devices |
505 8# - | |
-- | 2.4.5 Fuel Cells2.4.6 Dye-Sensitized Solar Cells; 2.5 Conclusion; 3: Metal Oxide Nanocomposites: Cytotoxicity and Targeted Drug Delivery Applications; 3.1 Introduction; 3.2 Metal Oxide Nanocomposites and Their Types; 3.2.1 Magnetic Nanocomposites; 3.2.1.1 Iron oxide-metal nanocomposites; 3.2.1.2 Iron oxide-carbon allotrope nanocomposites; 3.2.1.3 Iron oxide-polymer nanocomposites; 3.2.1.4 Novel magnetic nanocomposites; 3.2.2 Nonmagnetic Nanocomposites; 3.2.2.1 Metal-metal oxide nanocomposites; 3.2.2.2 Metal oxide-carbon a llotrope nanocomposites; 3.2.2.3 Metal oxide-polymer nanocomposites |
520 ## - | |
-- | Understanding surfaces and interfaces is a key challenge for those working on hybrid nanomaterials and where new imaging and analysis spectroscopy/electron microscopy responses are vital. The variability and site recognition of biopolymers, such as DNA molecules, offer a wide range of opportunities for the self-organization of wire nanostructures into much more complex patterns, while the combination of 1D nanostructures consisting of biopolymers and inorganic compounds opens up a number of scientific and technological opportunities. This book discusses the novel synthesis of nanomaterials and their hybrid composites; nanobiocomposites; transition metal oxide nanocomposites; spectroscopic and electron microscopic studies; social, ethical, and regulatory implications of various aspects of nanotechnology; and significant foreseeable applications of some key hybrid nanomaterials. The book also looks at how technology might be used in the future, estimating, where possible, the likely timescales in which the most far-reaching applications of technology might become a reality. Current research trends and potential future advances, such as nanomaterials, nanometrology, electronics, optoelectronics, and nanobiotechnology, are discussed, in addition to the benefits they are currently providing in the short, medium, and long terms. Furthermore, the book explains the current and possible future industrial applications of nanotechnology, examines some of the barriers to its adoption by industry, and identifies what environmental, health and safety, ethical, or societal implications or uncertainties may arise from the use of the technology, both current and future. |
588 ## - | |
-- | OCLC-licensed vendor bibliographic record. |
650 #0 - SUBJECT ADDED ENTRY--TOPICAL TERM | |
Topical term or geographic name as entry element | Nanocomposites (Materials) |
650 #0 - SUBJECT ADDED ENTRY--TOPICAL TERM | |
Topical term or geographic name as entry element | Nanostructured materials industry |
General subdivision | Technological innovations. |
650 #7 - SUBJECT ADDED ENTRY--TOPICAL TERM | |
Topical term or geographic name as entry element | TECHNOLOGY & ENGINEERING / Engineering (General) |
Source of heading or term | bisacsh |
650 #7 - SUBJECT ADDED ENTRY--TOPICAL TERM | |
Topical term or geographic name as entry element | TECHNOLOGY & ENGINEERING / Reference. |
Source of heading or term | bisacsh |
650 #7 - SUBJECT ADDED ENTRY--TOPICAL TERM | |
Topical term or geographic name as entry element | TECHNOLOGY / Material Science |
Source of heading or term | bisacsh |
650 #7 - SUBJECT ADDED ENTRY--TOPICAL TERM | |
Topical term or geographic name as entry element | TECHNOLOGY / Nanotechnology |
Source of heading or term | bisacsh |
700 1# - ADDED ENTRY--PERSONAL NAME | |
Personal name | Pal, Kaushik. |
856 40 - | |
-- | Taylor & Francis |
-- | https://www.taylorfrancis.com/books/9780429000966 |
856 42 - | |
-- | OCLC metadata license agreement |
-- | http://www.oclc.org/content/dam/oclc/forms/terms/vbrl-201703.pdf |
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