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Polymeric Materials in Corrosion Inhibition: Fundamentals and
Applications brings together the very latest information and
techniques in the preparation and application of a broad range of
polymeric materials as corrosion inhibitors in diverse corrosive
environments. Sections introduce the fundamentals of polymeric
materials, corrosion and corrosion inhibitors and include
methodical coverage of polymers as corrosion inhibitors, with
separate sections for natural and synthetic polymers. Each chapter
guides the reader through the synthesis, properties and application
of a specific polymer for corrosion inhibition, including an
analysis of advantages and disadvantages and guidance on methods
for improved performance. Final chapter cover other important
aspects and developments, including adsorption mechanisms, quantum
chemical calculations, molecular dynamics and simulations. This is
a valuable reference for researchers and advanced students across a
range of disciplines, including polymer science, corrosion,
electrochemistry, materials science, chemical engineering, and
petroleum engineering.
Magnesium (Mg) and its alloys have received widespread acceptance
in automobile industries and biomedical applications with
substantial recent advancements made in their development, however
a significant limitation remains their poor aqueous and galvanic
corrosion resistance. This book covers both the fundamentals and
recent advancements in two major corrosion protection strategies of
magnesium and its alloys, namely, metal-matrix composites and
protective coatings. Key features: Covers all aspects of
metal-matrix composites and protective coatings for magnesium
alloys to improve their corrosion resistance, wear resistance,
mechanical properties and biocompatibility Provides the most recent
research advancements in the corrosion mitigation strategies of
magnesium and its alloys Complete with case studies specific to
practical applications, this book serves as a ready reference for
graduate students, researchers, engineers and industry
professionals in the fields of materials, corrosion science,
biofouling and protective coatings.
Heterocyclic Organic Corrosion Inhibitors: Principles and
Applications aims to comprehend the synthesis and application of
organic heterocyclic compounds as corrosion inhibitors in various
corrosive environments. Considering the high importance of
corrosion inhibitor development for different industries, the book
provides the fundamentals and most recent advancements in this
field. The book is an indispensable reference tool for
industrialists and academicians working in the field of corrosion
protection.
Supramolecular chemistry, "the chemistry beyond the molecule", is a
fascinating realm of modern science. The design of novel
supramolecular structures, surfaces, and techniques are at the
forefront of research in different application areas, including
corrosion and biofouling protection. A team of international
experts provide a comprehensive view of the applications and
potential of supramolecular chemistry in corrosion and biofouling
prevention. Chapter topics include types and fundamentals of
supramolecules, supramolecular polymers and gels, host-guest
inclusion compounds, organic-inorganic hybrid materials,
metallo-assemblies, cyclodextrins, crown ethers, mesoporous silica
and supramolecular structures of graphene and other advances.
Additional Features include: Focuses on different aspects of
supramolecular chemistry in corrosion and biofouling prevention.
Comprehensively covers supramolecular interactions that can provide
better corrosion and biofouling protection. Provides the latest
developments in self-healing coatings. Explores recent research
advancements in the suggested area. Includes case studies specific
to industries. The different supramolecular approaches being
investigated to control corrosion and biofouling are gathered in
one well-organized reference to serve senior undergraduate and
graduate students, research students, engineers, and researchers in
the fields of corrosion science & engineering, biofouling, and
protective coatings.
This book addresses two critical problems that plague materials
that make up components in both desalination and cooling water
systems: corrosion, and fouling. The book addresses various types
and components of industrial desalination technologies with
solutions for controlling corrosion, scaling and biofouling. Issues
unique to desalination systems, vital for the production of clean
water, are considered as well. Green technologies are discussed
throughout, along with environmental and economic considerations.
The book presents solutions to the problems encountered by internal
and external parts of these systems and will aid professionals that
design, operate, and maintain them. It will be valuable to
professionals in the materials, corrosion, electrochemical and
wastewater industries, as well as chemical engineers. Addresses the
corrosion issues facing the conventional and modern water
desalination systems; Discusses the causes and remediation of
problems caused by corrosion, scaling, and biofouling in water
treatment; Offers green solutions, thereby minimizing environmental
impact while increasing control and productivity of water systems;
Suitable for professionals working with water desalination plants,
materials scientists and corrosion engineers.
Superhydrophobic coatings have attracted substantial scientific
research in recent years due to their real-world applications in a
variety of fields including anti-corrosion, anti-icing,
anti-fogging, oil separation and self-cleaning materials. Several
approaches and methods have been used in developing
superhydrophobic coatings on different substrates. This book guides
readers through their fabrication and application, representing the
latest significant advances in this important topic. Split into
four sections, Part One concentrates on the fundamental principles
of surface wettability and superhydrophobicity, before moving into
Part Two and Part Three, which focus on different aspects of
superhydrophobic coatings based on the materials used for
fabrication and the substrate on which the coating is applied.
Finally, Part Four focuses on the applications of these coatings.
This book will serve as a valuable reference for graduate students,
researchers and industrial practitioners in multiple industries
working on surface wettability, materials chemistry and coatings
related technologies.
Molybdenum and its compounds (oxides, sulphides, carbides,
nitrides, selenides, molybdates and molybdenum complexes) have a
number of applications in alloys, catalysts, electrochromics,
sensors, capacitors, batteries, solar cells and so on. Promising
works on their nanostructures have been reported as a means to
enhance the performance of materials. The present book is an edited
volume on molybdenum and its compounds in different applications.
There are chapters concentrating on molybdenum and its alloys,
molybdenum oxides, molybdenum sulphides, molybdenum carbides,
molybdenum nitrides, molybdenum selenides, molybdenum blues,
Keplerate-type molecular spheres, molybdenum complexes and
molybdates.
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