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Over the years, the uses and applications of various
non-conventional solvents such as ionic liquids, deep eutectic
solvents, crown ethers, fluorinated solvents, glycols, glycerol etc
diversified in various fields. This book consists of nine chapters,
which present recent advances and outlook on various
non-conventional solvents in organic transformations. Comparison
between traditional solvents and non-conventional solvents are also
highlighted in this book.
Over the years, applications of various non-conventional solvents
diversified in various fields such as organic synthesis, natural
products, drug design, pharmaceuticals, dyes and agrochemical
industries. This book consists of nine chapters, which present
recent advances and applications of various non-conventional
solvents in organic transformations, drug design and
bioremediation. Environmental impacts of non-conventional solvents
and comparison between traditional solvents and non-conventional
solvents are also discussed in this book.
Carbon-carbon and carbon-heteroatom bond-forming reactions are the
backbone of synthetic organic chemistry. Scientists are constantly
developing and improving these techniques in order to maximize the
diversity of synthetically available molecules. These techniques
must be developed in a sustainable manner in order to limit their
environmental impact. This book highlights green carbon-carbon and
carbon-heteroatom bond forming reactions.
Organocatalysis are an important tool for greener catalytic
processes due to the lack of precious metals used. This book
explores different organocatalysts and their use in synthesis.
Topics covered include zwitterionic imidazolium salt catalysts,
asymmetric catalysts in aqueous media, beaker yeast catalysis,
organocatalysts for Aldol and Michael reactions, amino acid-based
organocatalysts, and Broensted acidic surfactant organocatalysts.
Heterogeneous catalysts are an important tool for greener catalytic
processes due to the ease of their removal from the reaction
mixture and feasibility of reuse. When these catalysts can operate
in the ideal green solvent, water, they improve the sustainability
of the process. This book explores aqueous mediated heterogeneous
catalysts and their use in synthesis. Topics covered include
nanomaterials, quantum dots, metal organic frameworks, and their
use as catalysts.
Cancer is an incredibly diverse and difficult disease to treat, and
even after decades of research there is no definitive cure.
Therefore, it is highly crucial to search for novel and new organic
molecules with high potency, low toxicity, and low mutagenicity
with selective anticancer properties that are able to overcome
frequently developed resistance to available drugs. Heterocyclic
anticancer agents are an important class of drugs for cancer
therapies. This book explores different heterocycles and their use
as anticancer therapies. Topics covered include different
heterocyclic derivatives, the impact of heterocycles on anticancer
agent development, and naturally occurring heterocycles.
Magnetic nanocatalysts are becoming an important tool for greener
catalytic processes in chemical transformations in view of the ease
of their removal from a reaction medium. This book explores
assorted magnetic nanocatalysts, their deployment in synthesis,
chemical transformation and their recovery and reuse. Various
thematic topics embodied include magnetic nanocatalysts for S-S
bond formation, N-heterocycle formation, C-heteroatom bond
formation, silica-supported catalysts, multicomponent reactions,
including their recyclability; another available volume emphasizes
the utility of magnetic nanocatalysts in industrial appliances.
Organoselenium Chemistry is a unique resource in this branch of
organic/organometallic chemistry. The authors give an overview of
synthesis strategies, introduce bioactive and environmentally
friendly organoselenium compounds and discuss their applications
from organic synthesis to the clinic.
Carbon-carbon and carbon-heteroatom bond-forming reactions are the
backbone of synthetic organic chemistry. Scientists are constantly
developing and improving these techniques in order to maximize the
diversity of synthetically available molecules. These techniques
must be developed in a sustainable manner in order to limit their
environmental impact. This book highlights green bond forming
reactions for bioactive scaffolds.
Magnetic nanocatalysts are garnering attention for development of
greener catalytic processes due to their ease of recovery from a
reaction medium. This book delves into a variety of magnetic
nanocatalysts, their use in the industrial context, and
recyclability. Topics covered include wastewater treatment, drug
delivery, and industrial catalysis; another available volume
focuses on the use of magnetic nanocatalysts in synthetic
appliances and transformations.
Organophosphorus Chemistry presents a groundbreaking resource in
this branch of organic chemistry that demonstrates how
phosphorus-containing compounds can be manipulated in a variety of
organic reactions. The authors give an overview of the newest
trends and synthesis strategies, introduce bioactive and
environmentally friendly organophosphorus compounds and show their
importance in mainstream organic chemistry.
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Paperback
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