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Smart Ceramics: Preparation, Properties, and Applications by Ajay Kumar Mishra (

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Item specifics

Condition
Brand New: A new, unread, unused book in perfect condition with no missing or damaged pages. See all condition definitionsopens in a new window or tab
ISBN-13
9789814774307
Book Title
Smart Ceramics
ISBN
9789814774307
Subject Area
Technology & Engineering, Science
Publication Name
Smart Ceramics : Preparation, Properties and Applications
Publisher
Pan Stanford Publishing
Item Length
9.2 in
Subject
Materials Science / General, Chemistry / Physical & Theoretical, Materials Science / Ceramics
Publication Year
2018
Type
Textbook
Format
Trade Paperback
Language
English
Item Height
1.1 in
Author
Ajay Kumar Mishra
Item Weight
32.1 Oz
Item Width
7.5 in
Number of Pages
480 Pages

About this product

Product Identifiers

Publisher
Pan Stanford Publishing
ISBN-10
9814774308
ISBN-13
9789814774307
eBay Product ID (ePID)
234229665

Product Key Features

Number of Pages
480 Pages
Publication Name
Smart Ceramics : Preparation, Properties and Applications
Language
English
Publication Year
2018
Subject
Materials Science / General, Chemistry / Physical & Theoretical, Materials Science / Ceramics
Type
Textbook
Author
Ajay Kumar Mishra
Subject Area
Technology & Engineering, Science
Format
Trade Paperback

Dimensions

Item Height
1.1 in
Item Weight
32.1 Oz
Item Length
9.2 in
Item Width
7.5 in

Additional Product Features

Intended Audience
College Audience
Dewey Edition
23
Illustrated
Yes
Dewey Decimal
620.14
Table Of Content
Recent Trends in Sol-Gel-Based Nanoceramics Pradeep Pratap Singh and Ambika Ceramic Materials: General Introduction, Properties, and Fabrication Methods Deepak Pathania, Rishu Katwal, and Pankaj Thakur Ceramic-Based Nanomaterials for Multifunctional Application Sangeeta Adhikari, Ajay Kumar Mishra, and Debasish Sarkar Fabrication of Porous Nanoceramic Materials Based on Sol¿Gel Chemistry Neetu Talreja and Dinesh Kumar Technology of Refractory Materials Based on SHS in Metal¿Oxide Systems S. M. Fomenko, ¿. ¿. Dilmuhambetov, and Z. ¿. Mansurov Aliovalent Doping of Multiferroic BiFeO3 Nanoparticles for Enhanced Functionality Bhavya Bhushan and Amiya Priyam Ferroelectric Nanoceramic Materials K. Sivasakthi, S. Varun, and S. C. G. Kiruba Daniel Synthesis of Nanostructure Ceramics and Their Composites Ankita Dhillon and Dinesh Kumar Chemistry behind Performance of Ceramic Membranes and Their Future in Membrane Technology Derrick S. Dlamini, Nomcebo P. Khumalo, Simphiwe Zwane, Ajay K. Mishra, and Bhekie B. Mamba Sol-Gel Based Synthesis of Metal Oxide Nanoparticles for Air and Water Purification Rohit Bhatia, Seema Garg, and Pankaj Attri Ceramic Nanofibers and Its Application Sanjay R. Dhakate Corrosion-Resistant Ceramic Nanomaterial Systems Derived through Sol-Gel Technology S. Mojaki, A. K. Mishra, and S. B. Mishra TiO2 Nanomaterials for Photocatalytic Applications Nitynand Agasti Sol-Gel Fabricated Bioceramics for Clinical Applications Neetu Talreja and Dinesh Kumar Sol-Gel-Based Bioceramics: From Materials to Medicine Bharti Arora, Ji Hoon Park, Eun Ha Choi, and Pankaj Attri
Synopsis
Recent advances in nanotechnology have paved the way for the development of new smart materials. The term "smart ceramics" refers to ceramic materials fabricated from ultrafine particles. They have attracted the attention of researchers and scientists thanks to their potential to manipulate the length scale in the nanorange, leading to better and some unusual material properties. Smart ceramics ensure control of particle size, surface contamination, and degree of agglomeration. They play a crucial role in challenging applications such as bone surgery (e.g., the development of substitutes for load-bearing bone parts) and in biomedical science, especially in tissue engineering, dental applications, and drug and antigen delivery using modified ceramics. Porous nanostructured ceramics have potential use in both simple and complex applications, such as bioimaging, sensors, paints and pigments, optics, and electronics, because of their surface- and size-dependent properties. For the synthesis of smart ceramics, the sol-gel route has been mainly utilized because of its ability to produce a large variety of compositions and to ensure homogeneous mixing of the constituent particles at low temperature. This book describes the innovations in technologies through the development of functionalized ceramic materials for various applications. It also describes recent and expected challenges, along with their potential solutions, in advanced techniques for the synthesis and characterization of nanostructured ceramics and their composites: bioceramics, bioactive ceramics, multifunctional nanoceramics, transparent ceramics, nanocore shells, nanowires, thin films, nanotubes, and nanorods. The applications include the environment, health care, electrochemical sensors, high-temperature superconductors, nuclear reactor fuels, electrical insulators, refractory materials, electrical transformers, and magnetic core memory. The book will benefit researchers, scientists, engineers, and technologists working in the industry and in national and international research laboratories; academics who are interested in traditional and advanced smart ceramic composites; and students pursuing their postgraduate, graduate, and undergraduate degrees in smart ceramics, nanomaterials, nanoscience, and engineering.
LC Classification Number
TA455.C43

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