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The in-lab preparation of certain chemical reagents provides a number of advantages over purchasing various commercially prepared samples. This is especially true in isolated regions where acquiring the necessary substances from overseas can cause undue delay and inconvenience due to restrictions on the transportation of hazardous chemicals. An invaluable resource for chemists in a variety of environments, Small-Scale Synthesis of Laboratory Reagents with Reaction Modeling presents efficient, sensible, and versatile methods for the laboratory preparation of common chemical reagents.Rapid, reliable synthesis Designed to facilitate smooth experimentation in the lab, this volume presents preparations chosen for their short duration, availability of apparatus, high yield, and high purity of the product. Adding an educational component, the book also discusses fundamental processes in inorganic chemistry, presenting original modeling of reactions and their practical implementation. Theoretical aspects are discussed to a greater extent than is usual in synthetic literature in cases where there is a direct impact on experimental parameters, such as the reaction time, yield, and purity of the product.More than 30 convenient, time-saving preparationsFocusing on simple synthesis of high-purity reagents, the book contains over 30 presentations, a substantial number of which are mathematically modeled for the first time. Most syntheses can be carried out in one day using common laboratory equipment, making this volume a valuable and time-saving tool.
The in-lab preparation of some chemical reagents provides a number of advantages over purchasing commercially prepared samples. This volume contains a detailed description of methods for the rapid and reliable synthesis of many useful reagents that can be difficult to obtain. It provides spectroscopic analyses of products, presents the thermodynamic/kinetic data of reactions, and offers a thorough analysis of the purity of the final products. An additional feature is the mathematical modeling of reactions, some for the first time, with a comparison to the experiment. Enhanced by useful diagrams and photographs, this text is a valuable reference for researchers in small or remote laboratories.
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