Computational Catalysis. Este artículo no está disponible.
Idioma: inglés
Editorial: RSC Publishing Dez 2024, 2024
- Tapa dura
- Nuevo

Librería: AHA-BUCH GmbH, Einbeck, AlemaniaAHA-BUCH GmbH
Vendedor de IberLibro desde 14 de agosto de 2006
Condición: Nuevo
EUR 346,92
Descripción del artículo del vendedor
Neuware - First-principles-based modelling of catalysts is a growing field and the past decade has seen the range of applications for it increase. Improvements in computing power and developments in the areas of machine learning have made many exciting advances possible. The new edition of Computational Catalysis provides an update on the contents of the previous edition whilst introducing new chapters on kinetic Monte Carlo, modelling solvent effects, machine learning for catalyst modelling and design, and modelling complex heterogeneous structures. Written to be accessible to anyone with a familiarity with quantum mechanical methods, this book is a valuable resource for both early career researchers and graduate students.
N° de ref. del artículo 9781788018814
- Título
- Computational Catalysis
- Autor
- Michael Janik
- Editorial
- RSC Publishing Dez 2024
- Año de publicación
- 2024
- Estado
- Neu
- Encuadernación
- Buch
- Idioma
- inglés
- ISBN 10
- 1788018818
- ISBN 13
- 9781788018814
- Edición
- 2ª Edición
- Peso del artículo
- 680 gramos
- Dimensiones
- 236x160x28 mm
First-principles-based modelling of catalysts is a growing field and the past decade has seen the range of applications for it increase. Improvements in computing power and developments in the areas of machine learning have made many exciting advances possible.
The new edition of Computational Catalysis provides an update on the contents of the previous edition whilst introducing new chapters on kinetic Monte Carlo, modelling solvent effects, machine learning for catalyst modelling and design, and modelling complex heterogeneous structures. Written to be accessible to anyone with a familiarity with quantum mechanical methods, this book is a valuable resource for both early career researchers and graduate students.
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Acerca del autor
Prof. Michael Janik's research uses computational, atomistic modeling methods to investigate and design catalysts for alternative energy conversion systems. Janik earned his Ph.D. (2006, U. Virginia) in the field of heterogeneous catalysis under the joint-supervision of Prof. Robert J. Davis and Prof. Matthew Neurock. His thesis work used experimental and computational methods to examine acid catalysis of alkylation reactions. He completed post-doctoral study examining electrocatalyst design for direct methanol fuel cells under the advisement of Matthew Neurock. He began his appointment as an Assistant Professor of Chemical Engineering at PSU in August, 2006. Current research activities focus on fuel cells and electrochemical systems as well as fuel processing for hydrogen and synthesis gas production. Recent research activities are funded by the Department of Energy, National Science Foundation, and the American Chemical Society Petroleum Research Fund. Janik is affiliated with the PSU Electrochemical Engine Center, PSU Institutes of Energy and the Environment, and the PSU Energy Institute. He has published 28 articles in peer reviewed journals.
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