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Crystallization Via Nonclassical Pathways

Crystallization Via Nonclassical Pathways - ACS Symposium Series

Hardback (07 Sep 2021)

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Publisher's Synopsis

Developments in nonclassical crystallization Crystallization via nonclassical pathways is important during the formation of minerals in nature and has become a popular method to synthesize advanced materials at both lab and industrial scales. Unlike classical crystal growth pathways via monomer-by-monomer addition, crystallization via nonclassical pathways, such as particle-by-particle attachment, can form bigger crystals, faster. Understanding nonclassical crystallization can aid the recognition of geochemical processes in nature and provide new insight into the design and synthesis of novel materials. This book examines topics such as nonclassical nucleation, cluster assembly, particle-based crystallization, crystal formation from amorphous intermedium phases, biomineralization via nonclassical pathways, theoretical developments to simulate nonclassical crystallization, and observation and application of nonclassical crystallization. Experienced researchers can learn more about the development of new techniques, and readers in fields such as energy, catalysis, biomedicine, optics, electrics, and magnetics will find this work useful.

About the Publisher

Oxford University Press

Oxford University Press is a department of the University of Oxford. It furthers the University's objective of excellence in research, scholarship, and education by publishing worldwide. Our products cover an extremely broad academic and educational spectrum, and we aim to make our content available to our users in whichever format suits them best.We publish for all audiences-from pre-school to secondary level schoolchildren; students to academics; general readers to researchers; individuals to institutions. Our range includes dictionaries, English language teaching materials, children's books, journals, scholarly monographs, printed music, higher education textbooks, and schoolbooks.

Book information

ISBN: 9780841298828
Publisher: OUP USA
Imprint: Oxford University Press
Pub date:
DEWEY: 548.5
DEWEY edition: 23
Language: English
Number of pages: 370
Weight: 1050g
Height: 260mm
Width: 180mm
Spine width: 28mm