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During the last few decades silicon - nitrogen compounds have gained a lot of importance. These compounds have emerged as a precursor for many Si containing compounds. There are only a few synthetical methods to prepare these compounds. The Si-X bond is of particularly great importance in the chemistry of organosilicon compounds as almost all organosilicon compounds are ultimately obtained from elementary silicon through SiCl4, and alkyl(aryl)halosilanes. The Si-X bond is much more reactive than the C-X bond toward polar reagents. The ease of hydrolysis of halosilanes decreases with the successive replacement of halogens by alkyls or aryls. The Si-H bond is much more reactive than the C-H bond. Silicon nitrogen has very high potential application in semiconductor industries. Triamino silanes are a class of compounds having silicon -nitrogen compounds characterized by the presence of three amino (NH2) groups attached to a silicon atom. Hence these compounds play a major role in the applications in material science, catalysis etc. Exploring their potential and different methods of preparation, stability and reactivity open a promising avenues for fundamental research and practical applications.
This is the most recent of the Patai Updates, the "spin-off" series from the "Chemistry of Functional Groups". It covers hypervalent silicon compounds; siloxane polymers and copolymers; organosilicon derivatives of phosphorus; arsenic; antimony; and bismuth; chemistry of compounds with silicon-sulphur; silicon-selenium and silicon-tellurium bonds; transition-metal silyl derivatives; and chemistry of compounds with silicon-nitrogen bonds.
Reaction Heats and Bond Strengths presents the variations in the heats of particular types of reaction. This book covers a variety of topics, including the hydrogenation and polymerization of olefinic compounds, the dissociation of organic and organo-metallic compounds, and the molecular-addition compounds. Organized into 10 chapters, this book begins with an overview of the concept of bond energy that can be very useful where a comparison is being made between two dissimilar molecules. This text then examines the strain in cyclopropane and cyclobutane, which is largely a result of angular strain due to compression of the tetrahedral angle in the carbon–carbon bonding. Other chapters consider the experimental thermochemical data for some conjugated molecules. This book discusses as well the significance of representing a molecule, which originated from the concept of resonance. The final chapter deals with bond strength in phosphorus, silicon, and sulfur compounds. This book is a valuable resource for postgraduate students.
Pergamon Texts in Organic Chemistry, Volume 9: The Chemistry of Silicon presents information essential in understanding the chemical properties of silicon. The book first covers the fundamental aspects of silicon, such as its nuclear, physical, and chemical properties. The text also details the history of silicon, its occurrence and distribution, and applications. Next, the selection enumerates the compounds and complexes of silicon, along with organosilicon compounds. The text will be of great interest to chemists and chemical engineers. Other researchers working on research study involving silicon will also benefit from the book.
Volatile Silicon Compounds tackles the properties of volatile silicon compounds from both organic and inorganic perspectives. The title integrates the discussion on molecular structure and chemical properties. The opening chapter provides an introductory discourse on atomic properties. Next, the selection seals with SiH bond and the halides of silicon. The subsequent chapters discuss compounds containing silicon bound to various elemental groups. The text also covers other silicon compounds, such pseudohalogen derivatives and metal derivatives of silanes. The book will be of great use to students of chemistry related degrees.
This is the first volume in the series to concentrate on organo-lithium compounds - the sub series "The chemistry of the metal-carbon bond" (5 vol) treated organometallics in general. It deals with theoretical/physical/computational apsects, as well as major spectroscopies, such as MS, NMR, IR/UV etc and both biological and industrial applications. The core of the volume is the synthetic chapters with lots of examples for modern synthetic approaches Written by key researchers in the field An invaluable reference source to organic chemists working in academia and industry Features important reagents in organic synthesis
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