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Uzodinma Okoroanyanwu - Author

About the Author

Books by Uzodinma Okoroanyanwu

Molecular Theory of Lithography

Molecular Theory of Lithography

Author: Uzodinma Okoroanyanwu Format: Hardback Release Date: 26/09/2020

This book is a unified exposition of the molecular theory that underlies lithographic imaging. It explains with physical-chemical theories the molecular-level interactions involved in lithographic imaging. It also provides the theoretical basis for the main unit operations of the advanced lithographic process, as well as for advanced lithographic imaging mechanisms, including photochemical and radiochemical, imprint, and directed block copolymer self-assembly imaging mechanisms. The book is intended for student and professionals whose knowledge of lithography extends to the chemistry and physics underlying its various forms. A familiarity with chemical kinetics, thermodynamics, statistical mechanics, and quantum mechanics will be helpful, as will be familiarity with elementary concepts in physics such as energy, force, electrostatics, electrodynamics, and optics.

Chemistry and Lithography

Chemistry and Lithography

Author: Uzodinma Okoroanyanwu Format: Paperback / softback Release Date: 30/06/2020

This book is the first in a series of three volumes that make up the second edition of Chemistry and Lithography (2010). Although it is continued in Vol. 2, Chemistry in Lithography, and Vol. 3, The Practice of Lithography, each volume stands on its own. Volume 1 of the second edition weaves together threads of a narrative on the history of optical and molecular physics, optical technology, chemistry, and lithography, with the aim to give readers new insight into an aspect of the relationships between these fields that is often not fully appreciated: how the marriage of chemistry and optics led to the development and evolution of lithography. The book shows how major developments in chemistry, physics, and the technology of light have influenced the invention and development of lithography well beyond what its inventor envisioned. It also shows how developments in lithography have not only influenced the development of optics and chemistry, but also have played a critical role in the large-scale manufacture of integrated circuits that run the computers and machineries on which our modern electronic and information age depend. Finally, this book provides an analysis of the emerging trends in lithographic patterning, along with the current and potential applications of the resulting patterned structures and surfaces.

Chemistry and Lithography

Chemistry and Lithography

Author: Uzodinma Okoroanyanwu Format: Hardback Release Date: 15/02/2011

This book provides a concise treatment of the chemical phenomena in lithography in a manner that is accessible to a general readership. The book presents topics on the optical and charged particle physics practiced in lithography, with a broader view of how the marriage between chemistry and optics has made possible the print and electronic revolutions of the digital age. The related aspects of lithography are thematically presented to convey a unified view of the developments in the field over time, from the very first recorded reflections on the nature of matter to the latest developments at the frontiers of lithography science and technology. Part I of this book presents several important chemical and physical principles involved in the invention and evolution of lithography. Part II covers the processes for the synthesis, manufacture, usage, and handling of lithographic chemicals and materials. Part III investigates several important chemical and physical principles involved in the practice of lithography. Chemistry and Lithography is a useful reference for anyone working in the semiconductor industry.

Chemistry and Lithography

Chemistry and Lithography

Author: Uzodinma Okoroanyanwu Format: Hardback Release Date: 30/12/2010

This book provides a comprehensive treatment of the chemical phenomena in lithography in a manner that is accessible to a wide readership. The book presents topics on the optical and charged particle physics practiced in lithography, with a broader view of how the marriage between chemistry and optics has made possible the print and electronic revolutions of the digital age. The related aspects of lithography are thematically presented to convey a unified view of the developments in the field over time. This book is a useful reference for anyone working in the semiconductor industry.