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The theory, methods, and practices needed to build molecules and supramolecular systems Using a synthetic approach to organic materials chemistry, this book sets forth tested and proven methods and practices that make it possible to engineer organic molecules offering special properties and functions. Throughout the book, plenty of real-world examples demonstrate the countless possibilities of creating one-of-a-kind molecules and supramolecular systems to support a broad range of applications. The book explores applications in both materials and bioorganic chemistry, including molecular electronics, energy storage, sensors, nanomedicine, and enzyme engineering. Organic Synthesis and Molecula...
This timely overview of the syntheses for functional pi-systems focuses on target molecules that have shown interesting properties as materials or models in physics, biology and chemistry. The unique concept allows readers to select the right synthetic strategy for success, making it invaluable for a number of industrial applications. A "must have" for everyone working in this new and rapidly expanding field.
This volume presents articles on the developing field of molecular interactions, molecular recognition, crystal engineering, and structural determination of complex molecular systems. The approaches described are interdisciplinary in nature, reflecting the concept of the ISMRI series of symposia.
Comprehensive summary of the properties and performance of experimental analytical techniques for a wide range of electrochemical energy storage materials Energy Storage Materials Characterization summarizes the basic methods used to determine the properties and performance of energy storage materials and details a wide range of techniques used in electrochemical testing, including X-ray, neutron, optical, microwave, electron, and scanning probe techniques. Representative examples of each technique are presented to illustrate their powerful capabilities and offer a general strategy for future development of the original techniques. Preceding the main text, a helpful introduction covers topic...
Endlich ein Handbuch, das einen umfassenden Überblick über das faszinierende und wachsende Feld der gekreuzt konjugierten Moleküle, deren Chemie, Synthese und Eigenschaften bietet.
This is the first of a three-volume work dedicated to exploring the influence of G.W.F. Hegel’s philosophical thinking in Golden Age Denmark. The work demonstrates that the largely overlooked tradition of Danish Hegelianism played a profound and indeed constitutive role in many spheres of Golden Age culture. This initial tome covers the period from the beginning of the Hegel reception in the Danish Kingdom in the 1820s until the end of 1836. The dominant figure from this period is the poet and critic Johan Ludvig Heiberg, who attended Hegel’s lectures in Berlin in 1824 and then launched a campaign to popularize Hegel’s philosophy among his fellow countrymen. Using his journal Kjøbenhavns flyvende Post as a platform, Heiberg published numerous articles containing ideas that he had borrowed from Hegel. Several readers felt provoked by Heiberg’s Hegelianism and wrote critical responses to him, many of which appeared in Kjøbenhavnsposten, the rival of Heiberg’s journal. Through these debates Hegel’s philosophy became an important part of Danish cultural life.
Single-molecule electronics has evolved as a vibrant research field during the last two decades. The vision is to be able to create electronic components at the highest level of miniaturization-the single molecule. This book compiles and details cutting-edge research with contributions from chemists, physicists, theoreticians, and engineers. It cov
Includes entries for maps and atlases.