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Showing 1 - 14 of 14 matches in All Departments

Gold Nanoparticles - Reaching New Heights (Hardcover): Mohammed Rahman, Abdullah Mohammed Asiri Gold Nanoparticles - Reaching New Heights (Hardcover)
Mohammed Rahman, Abdullah Mohammed Asiri
R3,502 Discovery Miles 35 020 Ships in 10 - 15 working days
Post-Transition Metals (Hardcover): Mohammed Muzibur Rahman, Abdullah Mohammed Asiri, Anish Khan, Inam Uddin, Thamer Tabbakh Post-Transition Metals (Hardcover)
Mohammed Muzibur Rahman, Abdullah Mohammed Asiri, Anish Khan, Inam Uddin, Thamer Tabbakh
R3,512 Discovery Miles 35 120 Ships in 10 - 15 working days
Electrochemical Sensors Technology (Hardcover): Mohammed Rahman, Abdullah Mohammed Asiri Electrochemical Sensors Technology (Hardcover)
Mohammed Rahman, Abdullah Mohammed Asiri
R3,521 Discovery Miles 35 210 Ships in 10 - 15 working days
Advances in Colloid Science (Hardcover): Mohammed Rahman, Abdullah Mohammed Asiri Advances in Colloid Science (Hardcover)
Mohammed Rahman, Abdullah Mohammed Asiri
R3,558 Discovery Miles 35 580 Ships in 10 - 15 working days
Carbon Nanotubes - Recent Progress (Hardcover): Mohammed Muzibur Rahman, Abdullah Mohamed Asiri Carbon Nanotubes - Recent Progress (Hardcover)
Mohammed Muzibur Rahman, Abdullah Mohamed Asiri
R4,089 Discovery Miles 40 890 Ships in 10 - 15 working days
Nanofiber Research - Reaching New Heights (Hardcover): Mohammed Rahman, Abdullah Mohammed Asiri Nanofiber Research - Reaching New Heights (Hardcover)
Mohammed Rahman, Abdullah Mohammed Asiri
R3,547 Discovery Miles 35 470 Ships in 10 - 15 working days
Recent Progress in Organometallic Chemistry (Hardcover): Mohammed Rahman, Abdullah Mohammed Asiri Recent Progress in Organometallic Chemistry (Hardcover)
Mohammed Rahman, Abdullah Mohammed Asiri
R3,514 Discovery Miles 35 140 Ships in 10 - 15 working days
Conducting Polymer-Based Energy Storage Materials (Paperback): Rajender Boddula, Mohammad Faraz Ahmer, Abdullah Mohamed Asiri,... Conducting Polymer-Based Energy Storage Materials (Paperback)
Rajender Boddula, Mohammad Faraz Ahmer, Abdullah Mohamed Asiri, Inam Uddin
R1,522 Discovery Miles 15 220 Ships in 12 - 19 working days

Conducting polymers are organic polymers which contain conjugation along the polymer backbone that conduct electricity. Conducting polymers are promising materials for energy storage applications because of their fast charge-discharge kinetics, high charge density, fast redox reaction, low-cost, ease of synthesis, tunable morphology, high power capability and excellent intrinsic conductivity compared with inorganic-based materials. Conducting Polymers-Based Energy Storage Materials surveys recent advances in conducting polymers and their composites addressing the execution of these materials as electrodes in electrochemical power sources. Key Features: Provides an overview on the conducting polymer material properties, fundamentals and their role in energy storage applications. Deliberates cutting-edge energy storage technology based on synthetic metals (conducting polymers) Covers current applications in next-generation energy storage devices. Explores the new aspects of conducting polymers with processing, tunable properties, nanostructures and engineering strategies of conducting polymers for energy storage. Presents up-to-date coverage of a large, rapidly growing and complex conducting polymer literature on all-types electrochemical power sources. This book is an invaluable guide for students, professors, scientists, and R&D industrial specialists working in the field of advanced science, nanodevices, flexible electronics, and energy science.

Morphology Design Paradigms for Supercapacitors (Paperback): Inam Uddin, Rajender Boddula, Mohammad Faraz Ahmer, Abdullah... Morphology Design Paradigms for Supercapacitors (Paperback)
Inam Uddin, Rajender Boddula, Mohammad Faraz Ahmer, Abdullah Mohamed Asiri
R1,527 Discovery Miles 15 270 Ships in 12 - 19 working days

Nanostructured electrode materials have exhibited unrivaled electrochemical properties in creating elite supercapacitors. Morphology Design Paradigm for Supercapacitors presents the latest advances in the improvement of supercapacitors, a result of the incorporation of nanomaterials into the design - from zero-dimensional to three-dimensional, and microporous to mesoporous. The book includes a comprehensive description of capacitive practices at the levels of sub-atomic and nanoscales. These have the ability to enhance device performance for an extensive assortment of potential applications, including consumer electronics, wearable gadgets, hybrid electric vehicles, stationary and industrial frameworks. Key Features: Provides readers with a clear understanding of the implementation of these materials as electrodes in electrochemical supercapacitors. Covers recent material designs and an extensive scope of electrode materials such as 0D to 3D. Explores recent nanostructured-system material designs that have been created and tested in supercapacitor configurations. Considers microporous to mesoporous supercapacitor electrode materials. Features the impact of nanostructures on the properties of supercapacitors, including specific capacitance, cycle stability, and rate capability.

Inorganic Nanomaterials for Supercapacitor Design (Paperback): Inam Uddin, Rajender Boddula, Mohd Imran Ahamed, Abdullah... Inorganic Nanomaterials for Supercapacitor Design (Paperback)
Inam Uddin, Rajender Boddula, Mohd Imran Ahamed, Abdullah Mohamed Asiri
R1,599 Discovery Miles 15 990 Ships in 12 - 19 working days

Among electrode materials, inorganic materials have received vast consideration owing to their redox chemistry, chemical stability, high electrochemical performance, and high-power applications. These exceptional properties enable inorganic-based materials to find application in high-performance energy conversion and storage. The current advances in nanotechnology have uncovered novel inorganic materials by various strategies and their different morphological features may serve as a rule for future supercapacitor electrode design for efficient supercapacitor performance. Inorganic Nanomaterials for Supercapacitor Design depicts the latest advances in inorganic nanomaterials for supercapacitor energy storage devices. Key Features: ? Provides an overview on the supercapacitor application of inorganic-based materials. ? Describes the fundamental aspects, key factors, advantages, and challenges of inorganic supercapacitors. ? Presents up-to-date coverage of the large, rapidly growing, and complex literature on inorganic supercapacitors. ? Surveys current applications in supercapacitor energy storage. ? Explores the new aspects of inorganic materials and next-generation supercapacitor systems.

Food Applications of Nanotechnology (Hardcover): Gustavo Molina, Inam Uddin, Franciele Maria Pelissari, Abdullah Mohamed Asiri Food Applications of Nanotechnology (Hardcover)
Gustavo Molina, Inam Uddin, Franciele Maria Pelissari, Abdullah Mohamed Asiri
R6,914 Discovery Miles 69 140 Ships in 12 - 19 working days

Nanotechnology has developed remarkably in recent years and, applied in the food industry, has allowed new industrial advances, the improvement of conventional technologies, and the commercialization of products with new features and functionalities. This progress offers the potential to increase productivity for producers, food security for consumers and economic growth for industries. Food Applications of Nanotechnology presents the main advances of nanotechnology for food industry development. The fundamental concepts of the technique are presented, followed by examples of application in several sectors, such as the enhancement of flavor, color and sensory characteristics; the description of the general concepts of nano-supplements, antimicrobial nanoparticles and other active compounds into food; and developments in the field of packaging, among others. In addition, this work updates readers on the industrial development and the main regulatory aspects for the safety and commercialization of nanofoods. Features: Provides a general overview of nanotechnology in the food industry Discusses the current status of the production and use of nanomaterials as food additives Covers the technological developments in the areas of flavor, color and sensory characteristics of food and food additives Reviews nanosupplements and how they provide improvements in nutritional functionality Explains the antibacterial properties of nanoparticles for food applications This book will serve food scientists and technologists, food engineers, chemists and innovators working in food or ingredient research and new product development. Gustavo Molina is associate professor at the UFVJM (Diamantina-Brazil) in Food Engineering and head of the Laboratory of Food Biotechnology and conducts scientific and technical research. His research interests are focused on industrial biotechnology.Dr. Inamuddin is currently working as assistant professor in the chemistry department of Faculty of Science, King Abdulaziz University, Jeddah, Saudi Arabia. He is also a permanent faculty member (assistant professor) at the Department of Applied Chemistry, Aligarh Muslim University, Aligarh, India. He has extensive research experience in multidisciplinary fields of analytical chemistry, materials chemistry, and electrochemistry and, more specifically, renewable energy and environment. Prof. Abdullah M. Asiri is professor of organic photochemistry and has been the head of the chemistry department at King Abdulaziz University since October 2009, as well as the director of the Center of Excellence for Advanced Materials Research (CEAMR) since 2010. His research interest covers color chemistry, synthesis of novel photochromic and thermochromic systems, synthesis of novel coloring matters and dyeing of textiles, materials chemistry, nanochemistry and nanotechnology, polymers, and plastics. Franciele Maria Pelissari graduated in Food Engineering; earned her master's degree (2009) at the University of Londrina (UEL), Londrina, Brazil; and her PhD (2013) at the University of Campinas (Unicamp), Campinas, Brazil. Since 2013, she has been associate professor at the Institute of Science and Technology program at the Federal University of Jequitinhonha and Mucuri (UFVJM), Diamantina, Brazil, in Food Engineering, and also full professor in the graduate program in Food Science and Technology.

Conducting Polymers-Based Energy Storage Materials (Hardcover): Rajender Boddula, Mohammad Faraz Ahmer, Abdullah Mohamed Asiri,... Conducting Polymers-Based Energy Storage Materials (Hardcover)
Rajender Boddula, Mohammad Faraz Ahmer, Abdullah Mohamed Asiri, Inam Uddin
R5,522 Discovery Miles 55 220 Ships in 12 - 19 working days

Conducting polymers are organic polymers which contain conjugation along the polymer backbone that conduct electricity. Conducting polymers are promising materials for energy storage applications because of their fast charge-discharge kinetics, high charge density, fast redox reaction, low-cost, ease of synthesis, tunable morphology, high power capability and excellent intrinsic conductivity compared with inorganic-based materials. Conducting Polymers-Based Energy Storage Materials surveys recent advances in conducting polymers and their composites addressing the execution of these materials as electrodes in electrochemical power sources. Key Features: Provides an overview on the conducting polymer material properties, fundamentals and their role in energy storage applications. Deliberates cutting-edge energy storage technology based on synthetic metals (conducting polymers) Covers current applications in next-generation energy storage devices. Explores the new aspects of conducting polymers with processing, tunable properties, nanostructures and engineering strategies of conducting polymers for energy storage. Presents up-to-date coverage of a large, rapidly growing and complex conducting polymer literature on all-types electrochemical power sources. This book is an invaluable guide for students, professors, scientists, and R&D industrial specialists working in the field of advanced science, nanodevices, flexible electronics, and energy science.

Inorganic Nanomaterials for Supercapacitor Design (Hardcover): Inam Uddin, Rajender Boddula, Mohd Imran Ahamed, Abdullah... Inorganic Nanomaterials for Supercapacitor Design (Hardcover)
Inam Uddin, Rajender Boddula, Mohd Imran Ahamed, Abdullah Mohamed Asiri
R5,500 Discovery Miles 55 000 Ships in 12 - 19 working days

Among electrode materials, inorganic materials have received vast consideration owing to their redox chemistry, chemical stability, high electrochemical performance, and high-power applications. These exceptional properties enable inorganic-based materials to find application in high-performance energy conversion and storage. The current advances in nanotechnology have uncovered novel inorganic materials by various strategies and their different morphological features may serve as a rule for future supercapacitor electrode design for efficient supercapacitor performance. Inorganic Nanomaterials for Supercapacitor Design depicts the latest advances in inorganic nanomaterials for supercapacitor energy storage devices. Key Features: Provides an overview on the supercapacitor application of inorganic-based materials. Describes the fundamental aspects, key factors, advantages, and challenges of inorganic supercapacitors. Presents up-to-date coverage of the large, rapidly growing, and complex literature on inorganic supercapacitors. Surveys current applications in supercapacitor energy storage. Explores the new aspects of inorganic materials and next-generation supercapacitor systems.

Morphology Design Paradigms for Supercapacitors (Hardcover): Inam Uddin, Rajender Boddula, Mohammad Faraz Ahmer, Abdullah... Morphology Design Paradigms for Supercapacitors (Hardcover)
Inam Uddin, Rajender Boddula, Mohammad Faraz Ahmer, Abdullah Mohamed Asiri
R5,486 Discovery Miles 54 860 Ships in 12 - 19 working days

Nanostructured electrode materials have exhibited unrivaled electrochemical properties in creating elite supercapacitors. Morphology Design Paradigm for Supercapacitors presents the latest advances in the improvement of supercapacitors, a result of the incorporation of nanomaterials into the design - from zero-dimensional to three-dimensional, and microporous to mesoporous. The book includes a comprehensive description of capacitive practices at the levels of sub-atomic and nanoscales. These have the ability to enhance device performance for an extensive assortment of potential applications, including consumer electronics, wearable gadgets, hybrid electric vehicles, stationary and industrial frameworks. Key Features: Provides readers with a clear understanding of the implementation of these materials as electrodes in electrochemical supercapacitors. Covers recent material designs and an extensive scope of electrode materials such as 0D to 3D. Explores recent nanostructured-system material designs that have been created and tested in supercapacitor configurations. Considers microporous to mesoporous supercapacitor electrode materials. Features the impact of nanostructures on the properties of supercapacitors, including specific capacitance, cycle stability, and rate capability.

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