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Helicenes A thorough introduction to everything there is to know about this fascinating compound class The intriguing nature of this highly interesting compound class has inspired much research over the last decade, and much of what has been produced is highly interdisciplinary, with applications found in catalysis, material science, and spectroscopy. Indeed, the field has reached maturity such that elegant synthetic methods are now available and novel applications in arenas such as enantioselective catalysis and optoelectronics are appearing. Helicenes provides not only an introduction to the synthesis of the fascinating compound class of helicenes, but also describes the properties and, most importantly, their applications. The book thoroughly explains several synthetic routes from classical to state-of-the-art methods. In addition, the different classes of helicene-based molecules – organic, organometallic, oligo-meric, and multidimensional – are covered. Helicenes readers will also find: Edited by world-leading experts in the field of chirality A comprehensive and well-structured approach that deals with every aspect of this compound class Discussions of the applications of helicenes in organic synthesis, photophysics, material science, optoelectronic devices, on-surface chemistry, and theoretical calculations A special focus on the applications of helicenes in catalysis, optoelectronics, non-linear optics, and chiroptical spectroscopy Chapters focusing on helicenes as theoretical helically chiral models Helicenes is an essential reference for organic chemists, materials scientists, spectroscopists, polymer chemists, inorganic chemists, and catalytic chemists, as well as students in these fields and libraries supplying them.
Process-Induced Food Toxicants combines the analytical, health, and risk management issues relating to all of the currently known processing-induced toxins that may be present in common foods. It considers the different processing methods used in the manufacture of foods, including thermal treatment, drying, fermentation, preservation, fat processing, and high hydrostatic pressure processing, and the potential contaminants for each method. The book discusses the analysis, formation, mitigation, health risks, and risk management of each hazardous compound. Also discussed are new technologies and the impact of processing on nutrients and allergens.
Aromatic compounds are a diverse and fascinating class of compounds with wide-ranging importance. This book provides an overview of the synthesis and reactivity of aromatic compounds. The publication covers the many important reaction types, such as electrophilic and nucleophilic substitution, the reactivity of benzynes, aryllithium chemistry, and transition metal-mediated reactions. It also includes a discussion of the synthesis of heteroaromatic compounds, polycyclic aromatic compounds, and nonplanar aromatic systems. This book focusses on reaction mechanisms and numerous examples of applications in multistep synthesis of aromatic compounds.
Arynes have been important, well-recognized reactive intermediates in organic chemistry since the first speculation of their existence at the beginning of the 20th century. In recent years, synthetic chemistry with arynes has experienced a remarkable revival, leading to diverse new reactions that provide convenient and direct access to various aromatic compounds of high synthetic significance. Comprehensive Aryne Synthetic Chemistry summarizes the progress in the synthetic utilization of arynes for noncatalytic and transition metal-catalyzed reactions developed in the last 20 years. The book covers a broad range of topics including methods of generating arynes, regioselectivity, electrophilic couplings, pericyclic reactions, transition metal-catalyzed reactions, and cycloadditions. It is ideal for advanced students and researchers working in synthetic organic chemistry in academia and industry. Presents an overview of aryne synthetic chemistry, which has experienced a remarkable revival in the 21st century Provides a systematic classification of reactions with arynes Includes comprehensive descriptions of synthetic utilization of arynes ranging from noncatalytic to transition metal-catalyzed reactions Features systematically organized reaction modes and the aromatic compounds formed from these reactions
The topic ·Stress and Strain· of this conference was ideally constrasted by the remoteness and quiet atmosphere of the meeting place Hotel Seehof In Ratzeburg, a small medieval town situated on a peninsula in lake "Kuchensee· east of Hamburg In northern Germany. With the participation of 53 leading experts from all over the world, the workshop covered the widest possible range from the advancement of bonding theory, new mechanistic insights into chemical transformations and physical properties of highly strained compounds to their use as building blocks In organic synthesis and even as probes Into the detection of enzyme mechanisms. Because of their specific reactivities small ring units can uniquely play their role in the construction of composite functionalities. Such functionalities can increase the elegance In natural and non-natural products syntheses, since they help to develop more convergent synthetic routes and Improve the necessary chemo-, regio-and stereo-selectivity. This book presents all of the 20 Invited lectures and is complemented with short versions of 12 contributed papers and 13 poster presentations. I am convinced that it will stimulate further rapid development of this field of organic chemistry, which recently has seen extensions into the bioorganic area as well as towards new materials. In fact, several ·supra-natural" -at first sight exotic -compounds are already available In useful quantities and are being exploited to create vastly new molecular devices, i. e. compounds with unprecedented molecular functions and polymers with unconventional properties.
This book comprehensively and systematically demonstrates the theory and practice of designing, synthesizing and improving the performance of fuels. The contents range from polycyoalkane fuels, strained fuels, alky-diamondoid fuels, hypergolic and nanofluid fuels derived from fossil and biomass. All the chapters together clearly describe the important aspects of high-energy-density fuels including molecular design, synthesis route, physiochemical properties, and their application in improving the aerocraft performance. Vivid schematics and illustrations throughout the book enhance the accessibility to the relevant theory and technologies. This book provides the readers with fundamentals on high-energy-density fuels and their potential in advanced aerospace propulsion, and also provides the readers with inspiration for new development of advanced aerospace fuels.