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This book tells the fascinating story of the discovery of buckminsterfullerene, a perfectly symmetrical soccer-ball shaped molecule composed of 60 carbon atoms. This new molecule, one of a large family of carbon cage molecules called "fullerenes"--represents a new form of carbon, complementing such well-known materials as diamond and graphite. Its discovery has revolutionized our understanding of carbon, once the most familiar elements. It has heralded a new chemistry, a new range of high-temperature superconductors and some marvelous new concepts in the architecture of large carbon structures. In this account, prize-winning science writer Jim Baggott tells the compelling story of buckminsterfullerene, from its natural occurrence in the cold chemistry of interstellar clouds to its accidental, stunning creation in a modern chemistry laboratory, and the subsequent development of one of today's fastest-growing scientific fields. By combining a lucid and entertaining style with scientific accuracy, the author has written a book that will appeal to general readers and chemists alike.
This book investigates the accidental discovery and subsequent scientific impact of buckminsterfullerene, a unique carbon molecule. Jim Baggott, an established science writer, utilizes historical accounts and chemical research to document how this soccer-ball shaped structure emerged from laboratory experiments. The text argues that the identification of this molecule fundamentally altered the understanding of carbon chemistry and opened new avenues for material science. By tracing the molecule from interstellar space to the laboratory, the author provides a comprehensive framework for understanding its significance in modern chemistry.
What You Will Find
Experts and readers frequently cite this work as a clear and accessible entry point into the history of modern chemical discovery. The text is noted for balancing technical accuracy with a narrative style that remains approachable for both professional chemists and interested laypeople.
Page Count:
328
Publication Date:
1996-07-11
Publisher:
Oxford University Press
ISBN-10:
0198557892
ISBN-13:
9780198557890
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