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This book covers the various aspects of MXenes nanomaterials and
its composites from the fabrication to the potential applications
in energy devices, sensors, and environmental remediation. MXenes
are two-dimensional (2D) transition metal carbides and nitrides
which contains novel combination of properties including great
conductivity and mechanical, thermal features of transition metal
carbide and nitrides. In addition, MXenes nanomaterials possess
high surface area, novel morphology, and layered structure and the
functionalized of its surfaces gives it excellent hydrophilic
characteristics and high absorption of electromagnetic radiations
making them versatile materials for various applications. The
beginning part of the book gives an in-depth literature covering
the fundamental principles, fabrication, self-assembling strategies
of nano-engineered MXenes, and their composites materials. The
later chapters describe the chemical functionalization ofÂ
MXenes nanomaterials for diversified applications such as
electromagnetic shielding, energy storage devices (super
capacitors, lithium ion batteries, CO2 capture, optical switching,
transistors), photo catalysis, drug delivery, implants, tissue
engineering, water purification, and sensing applications. It
demonstrates that MXene-based advanced architectures promote
continuous innovations and provide driving force in different
fields particularly in environmental remediation and energy storage
devices. This book is essential reading for all chemists,
biologists, physicists, and environmental scientists working in the
field of nanotechnology, energy, and environmental chemistry. It
helps academics and professionals to polish their knowledge with
the latest described data. It also helps professionals in
developing innovative technologies by keeping in mind the
applications of functionalized nanostructured MXenes.
Metal-Organic Framework Nanocomposites: From Design to Application
assembles the latest advances in MOF nanocomposites, emphasizing
their design, characterization, manufacturing, and application and
offering a wide-ranging view of these materials with exceptional
physical and chemical properties. FEATURES Discusses various types
of MOF materials, such as polyaniline MOF nanocomposites, magnetic
MOF nanocomposites, and carbon nanotube-based MOF nanocomposites
Includes chapters on the usage of these materials in pollutant
removal, electrochemical devices, photocatalysts, biomedical
applications, and other applications Covers different aspects of
composite fabrication from energy storage and catalysts, including
preparation, design, and characterization techniques Emphasizes the
latest technology in the field of manufacturing and design Aimed at
researchers, academics, and advanced students in materials science
and engineering, this book offers a comprehensive overview and
analysis of these extraordinary materials.
Carbon-Based Metal Free Catalysts: Preparation, Structural and
Morphological Property and Application covers the different aspects
of carbon-based metal free catalysts, including the fabrication of
catalysts from natural sources and carbon allotropes, their
manufacturing and design, characterization techniques, and
applications. Special features in the book include illustrations
and tables which summarize up-to-date information on research
carried out on manufacturing, design, characterization and
applications of metal free catalysts. This book assembles the
information and knowledge on metal free catalysts and emphasizes
the concept of green technology in the field of manufacturing and
design. It is an ideal reference source for lecturers, students,
researchers and industrialists working in the field of new catalyst
development, especially polymer composites and is a valuable
reference book handbook for teaching, learning, and research.
Plant Biomass Application: Materials, Modification and
Characterization focuses on the unique properties associated with
plant biomass, from their biodegradable, non toxic, and safe for
handling characteristics to their potential in developing
sustainable, climate protecting products. Plant biomass has found
many applications in the fields of biomedical, food, packaging,
electronics, automotive, sensors, and textile industry, however
there are very few books dealing in depth with materials derived
from plant biomass for versatile application fields. This book
covers all aspects of plant biomass materials opportunities with
focus on the value-added product generated from plant biomass such
as polymers, composites, transportation fuels, chemical
intermediates/bulk chemicals, or sources of heat and generated
power. The conversion of plant biomass into materials product such
as plastics, fabrics, and carpets and specialty chemicals, presents
exciting possibilities for replacing traditionally used fossil
fuels. There are higher value, and more attractive, uses for for
plant biomass use than just as fuel. Meanwhile, most agriculture,
forestry, and food wastes contain ligno-cellulosic resource
creating a vast and diverse resource generating system for plant
biomass. Plant Biomass Materials provides and in-depth discussion
of the materials derived from plant biomass and their current and
potential future applications. Leading researchers from industries,
academics, government and private research institutions across the
globe have provided their insights, making it an important
reference for researchers and academics seeking to maximize plant
biomass potential.
Nanomaterials for Hydrogen Storage Applications introduces
nanomaterials and nanocomposites manufacturing and design for
hydrogen storage applications. The book covers the manufacturing,
design, characterization techniques and hydrogen storage
applications of a range of nanomaterials. It outlines fundamental
characterization techniques for nanocomposites to establish their
suitability for hydrogen storage applications. Offering a sound
knowledge of hydrogen storage application of nanocomposites, this
book is an important resource for both materials scientists and
engineers who are seeking to understand how nanomaterials can be
used to create more efficient energy storage solutions.
Self-Healing Composite Materials: From Designs to Applications
provides a unique resource on self-healing composites for materials
scientists and engineers in academia, as well as researchers
involved in the aerospace, automotive, wind-generation,
construction, consumer goods and marine industries. There is a huge
demand for self-healing composites that respond to their
environment like living matter. Unlike other composites,
self-healing composites are combined with carbon materials and
resins to form a recoverable composite material. This book covers
the manufacturing, design and characterization of self-healing
composites, including their morphological, structural, mechanical,
thermal and electrical properties. The title begins with
mathematical background and then considers innovative approaches to
physical modeling, analysis and design techniques, providing a
robust knowledge of modern self-healing composites with commercial
applications.
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