Organic and Inorganic Materials Based Sensors, 3 Volumes
Title | Organic and Inorganic Materials Based Sensors, 3 Volumes PDF eBook |
Author | Sangita Das |
Publisher | Wiley-VCH |
Pages | 0 |
Release | 2023-05-01 |
Genre | Technology & Engineering |
ISBN | 9783527349555 |
Covers varieties of materials and sensing devices. An invaluable resource for researchers working in sensors and organic electronics.
Organic and Inorganic Materials Based Sensors, 3 Volumes
Title | Organic and Inorganic Materials Based Sensors, 3 Volumes PDF eBook |
Author | Sangita Das |
Publisher | John Wiley & Sons |
Pages | 1409 |
Release | 2023-12-22 |
Genre | Technology & Engineering |
ISBN | 3527846689 |
Organic and Inorganic Materials Based Sensors A three-volume comprehensive overview of the development and applications of various novel potent molecular sensor frameworks In Organic and Inorganic Materials Based Sensors (3 Volume Set), a team of distinguished researchers delivers an interdisciplinary presentation of the engineering of high-performance biopolymer-based bio-nanocomposites, as well as strategies for the use of various molecules in the detection of environmentally important guest analytes. This three-volume book explores the most relevant technological developments in nanomaterials sensors and offers a broad and comprehensive overview of cutting-edge research on advanced materials in the fast-moving sensors industry. The authors explain the science behind nanomaterials for environmental remediation as well as the components and ingredients of the relevant materials. Readers will also find: Thorough introductions to sensory devices, polymer-based nano-biomaterials, and opto-electrochemical devices Comprehensive explorations of metal–organic frameworks, organic sensors, and organic–inorganic composite semiconductor sensors Practical discussions of vapochromic and vapoluminescent sensors Fulsome treatments of sensor ecosystems for health self-monitoring, including discussions of diabetes management Perfect for materials scientists, mechanical engineers, and analytical chemists, Organic and Inorganic Materials Based Sensors will also benefit inorganic and organic chemists, robotics engineers, and professionals working in the sensor industry.
Advanced Nanomaterials for Inexpensive Gas Microsensors
Title | Advanced Nanomaterials for Inexpensive Gas Microsensors PDF eBook |
Author | Eduard Llobet Valero |
Publisher | Elsevier |
Pages | 370 |
Release | 2019-11-13 |
Genre | Technology & Engineering |
ISBN | 0128148284 |
Advanced Nanomaterials for Inexpensive Gas Microsensors: Synthesis, Integration and Applications presents full coverage in the area of gas sensing nanomaterials, from materials, transducers and applications, to the latest results and future direction. Experts present work on metal oxides, carbon-based and hybrid materials, fabrication and application. The book brings together three major themes, including synthesis, functionalization and the characterization of advanced nanomaterials, all emphasizing synthesis techniques that ease the integration of nanomaterials in transducers. Chapters encompass a wide spectrum of sensing technologies, including advanced nanomaterials (metal oxides, carbon materials and graphene) and organic molecular materials and atomic layers (MoS2). The book's authors examine the coupling of sensitive nanomaterials to different types of transducer elements and their applications, including direct growth and additive fabrication techniques as a way to obtain inexpensive gas microsensors, principal transduction schemes, and advanced operating methods. - Presents technological solutions and applications of gas sensors in varied areas of chemistry, physics, material science and engineering - Examines advanced operating methods (e.g., temperature modulation, self-heating, light-activated response, noise methods) to enhance stability, sensitivity, selectivity and reduce power consumption - Provides a critical review of current applications and their expected future evolution, demonstrating the most promising approaches and future expectations in the development of inexpensive gas micro- and nanosensors
Mechanoluminescence in Organic and Inorganic Compounds
Title | Mechanoluminescence in Organic and Inorganic Compounds PDF eBook |
Author | Vikas Dubey |
Publisher | Elsevier |
Pages | 294 |
Release | 2024-05-23 |
Genre | Science |
ISBN | 0323953026 |
Mechanoluminescence in Organic and Inorganic Compounds: Basic Concepts, Instrumentation, and Applications provides a comprehensive overview of mechanoluminescence for newly qualified researchers and scientists across multiple related fields. It serves as a guide for budding scientists to advance in the field through various applications covered in this book, such as energy, mechanics, medicine, and optics. This reference shines light on the pros and cons of utilizing organic or inorganic mechanoluminescent materials, making it a handy tool for researchers worldwide involved in luminescence and applications such as optoelectronics, sensors, forensics, displays, energy harvesting, and smart robotics. The editors and their expert contributors summarize these applications, making it a valuable resource for academics, researchers, and those working in industry. Mechanoluminescence in Organic and Inorganic Compounds contains broad coverage, which progresses from theory to applications, serves as a complete reference of global research and experience, which will work to inform and guide the development of more efficient devices for the future. - Provides a comprehensive analysis of mechanoluminescence, starting from theory and moving on to instrumentation and applications - Includes applications of mechanoluminescence covering fields such as electronics, mechanics, medicine, and optics, in just one book - Promotes new research ideas in budding scientists on advanced applications for eco-friendly and sustainable growth of the academia and related industries
Metal-Organic Framework Materials
Title | Metal-Organic Framework Materials PDF eBook |
Author | Leonard R. MacGillivray |
Publisher | John Wiley & Sons |
Pages | 1210 |
Release | 2014-09-19 |
Genre | Science |
ISBN | 1118931580 |
Metal-Organic Frameworks (MOFs) are crystalline compounds consisting of rigid organic molecules held together and organized by metal ions or clusters. Special interests in these materials arise from the fact that many are highly porous and can be used for storage of small molecules, for example H2 or CO2. Consequently, the materials are ideal candidates for a wide range of applications including gas storage, separation technologies and catalysis. Potential applications include the storage of hydrogen for fuel-cell cars, and the removal and storage of carbon dioxide in sustainable technical processes. MOFs offer the inorganic chemist and materials scientist a wide range of new synthetic possibilities and open the doors to new and exciting basic research. Metal-Organic Frameworks Materials provides a solid basis for the understanding of MOFs and insights into new inorganic materials structures and properties. The volume also reflects progress that has been made in recent years, presenting a wide range of new applications including state-of-the art developments in the promising technology for alternative fuels. The comprehensive volume investigates structures, symmetry, supramolecular chemistry, surface engineering, recognition, properties, and reactions. The content from this book will be added online to the Encyclopedia of Inorganic and Bioinorganic Chemistry: http://www.wileyonlinelibrary.com/ref/eibc
Biomass Based Energy Storage Materials
Title | Biomass Based Energy Storage Materials PDF eBook |
Author | Inamuddin |
Publisher | Materials Research Forum LLC |
Pages | 140 |
Release | 2020-08-15 |
Genre | Technology & Engineering |
ISBN | 1644900874 |
The book presents an in-depth review of biomass-derived materials for energy storage technologies. Biomass is the most renewable and abundant carbon resource and has great potential for sustainable energy production. Topics covered include: Bone Char as a Support Material to Build a Microbial Biocapacitor; Biomass Derived Composites; Lignin- and Bamboo Derived Materials, Cellulose-Derived Electrodes; Water Splitting, Fuel cells, and Supercapacitor Technologies. 465 References. Keywords: Bamboo Stick, Biochar, Bioelectrodes, Biofilm, Biomass, Bone Char, Carbon Nanofiber, Cellulose-Derived Electrodes, Fuel Cells, Green Energy, Microbial Biocapacitor, Biomass Derived Composites, High-Frequency Supercapacitors, Lignin Materials, Bamboo Materials, Lithium-Ion Batteries, Lithium-Sulfur Batteries, Natural Precursors, Porous Carbon, Supercapacitor Technology, Water Splitting.
Encyclopedia of Polymer Applications, 3 Volume Set
Title | Encyclopedia of Polymer Applications, 3 Volume Set PDF eBook |
Author | Munmaya Mishra |
Publisher | CRC Press |
Pages | 2954 |
Release | 2018-12-17 |
Genre | Science |
ISBN | 1351019414 |
Undoubtedly the applications of polymers are rapidly evolving. Technology is continually changing and quickly advancing as polymers are needed to solve a variety of day-to-day challenges leading to improvements in quality of life. The Encyclopedia of Polymer Applications presents state-of-the-art research and development on the applications of polymers. This groundbreaking work provides important overviews to help stimulate further advancements in all areas of polymers. This comprehensive multi-volume reference includes articles contributed from a diverse and global team of renowned researchers. It offers a broad-based perspective on a multitude of topics in a variety of applications, as well as detailed research information, figures, tables, illustrations, and references. The encyclopedia provides introductions, classifications, properties, selection, types, technologies, shelf-life, recycling, testing and applications for each of the entries where applicable. It features critical content for both novices and experts including, engineers, scientists (polymer scientists, materials scientists, biomedical engineers, macromolecular chemists), researchers, and students, as well as interested readers in academia, industry, and research institutions.