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The research on carbon dots is evolving and expanding very rapidly.
A high-tech overview for academia and industry is needed to
modernize carbon dots in biological applications. This book covers
the use of carbon dots in biology, medicine, and pharmacy:
synthesis, properties and applications, obstacles in exploiting
these materials, and future research prospects. The reader is able
to explore the wide scope of carbon dots in the global market.
Corrosion is a high-cost and potentially hazardous issue in
numerous industries. The potential use of diverse carbon
nanoallotropes in corrosion protection, prevention and control is a
subject of rising attention. This book covers the current
advancements of carbon nanoallotropes in metal corrosion
management, including the usage of nanostructure materials to
produce high-performance corrosion inhibitors and
corrosion-resistant coatings.
Metal Organic Frameworks: Fundamentals to Advanced offers a
substantial and complete treatment of published results. The book
includes a summary of current research, along with an in- depth
explanation of Metal organic frameworks (MOFs) and applications in
this versatile area. Metal organic frameworks (MOFs) are structured
frameworks made up of metal ions and organic molecules. These
materials are similar to sponges and can absorb, retain and remove
molecules from their pores. As a result, metal-organic frameworks
(MOFs) are the most rapidly evolving substances in chemistry with
the highest surface areas due to their well-ordered pore
structure.The exciting and vast surface area allows for more
chemical reactions and molecule adsorption, hence this new resource
provides the newest updates on the topics covered.
Handbook of Organic Named Reactions: Reagents, Mechanisms and
Applications discusses the reactions used in organic synthesis,
showing the value and scope of these reactions and how they are
used in the synthesis of organic molecules. Presenting an
accounting of the traditional methods used, as well as the latest
details on the advances made in synthetic chemistry research, the
named reactions of carbonyl compounds, alcohols, amines,
heterocyclic molecules, rearrangements and coupling reactions are
all included. Explaining the established research and including
detailed mechanism information, step-by-step descriptions, problems
and the applications of named reactions in industry, this book also
discusses emerging aspects. Additional sections cover present and
future research directions, making it an invaluable resource for
all those needing to familiarize themselves with the concepts and
applications of designated reactions.
Handbook of Biomolecules: Fundamentals, Properties and Applications
is a comprehensive resource covering new developments in
biomolecules and biomaterials and their industrial applications in
the fields of bioengineering, biomedical engineering,
biotechnology, biochemistry, and their detection methods using
biosensors. This book covers the fundamentals of biomolecules,
their roll in living organism, structure, sources, important
characteristics, and the industrial applications of these
biomaterials. Sections explore amino acids, carbohydrates, nucleic
acids, proteins, lipids, metabolites and natural products, then go
on to discuss purification techniques and detection methods.
Applications in biomolecular engineering, biochemistry and
biomedical engineering, among others, are discussed before
concluding with coverage of biomolecules as anticorrosion
materials.
Computational Modeling and Simulations for Designing of Corrosion
Inhibitors: Fundamentals and Realistic Applications offers a
collection of major advancements in the field of computational
modeling for the design and testing of corrosion inhibition
effectiveness of organic corrosion inhibitors. This guide presents
the latest developments in molecular modeling of organic compounds
using computational software, which has emerged as a powerful
approach for theoretical determination of corrosion inhibition
potentials of organic compounds. The book covers common techniques
involved in theoretical studies of corrosion inhibition potentials,
and mechanisms such as density functional theory, molecular
dynamics, Monte Carlo simulations, artificial neural networks, and
quantitative structure-activity relationship.
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The High Notes
Danielle Steel
Paperback
R340
R266
Discovery Miles 2 660
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