
Computational Methods for the Analysis of Non-Covalent Interactions by Carlos Martín-Fernández
This volume showcases state-of-the-art computational methodologies for the description and analysis of non-covalent interactions. Each chapter focusses on a specific approach, outlining a theoretical framework for the method in hand that is then illustrated by cutting-edge applications. A range of energy decomposition analyses and real-space topological and geometrical schemes are covered, providing a menu of approaches from which to draw insight into non-covalent interactions. The book serves as a comprehensive resource for computational chemists, as well as experimental chemists seeking to understand how computational techniques can be applied in their research.
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Structure and Bonding
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Applications of Evolutionary Computation in Chemistry
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Metallocofactors that Activate Small Molecules
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Molecular Electronic Structures of Transition Metal Complexes I
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Inorganic 3D Structures
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Molecular Self-Assembly
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Liquid Crystals I
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Functional Phthalocyanine Molecular Materials
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Fuel Cells and Hydrogen Storage
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Data Mining in Crystallography
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Photofunctional Transition Metal Complexes
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Molecular Electronic Structures of Transition Metal Complexes II
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Zintl Ions
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Superconductivity in Complex Systems
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Halogen Bonding
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Zintl Phases
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Less Common Metals in Proteins and Nucleic Acid Probes
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Controlled Assembly and Modification of Inorganic Systems
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Functional Molecular Silicon Compounds II
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Structural Information from Spin-Labels and Intrinsic Paramagnetic Centres in the Biosciences
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Functional Molecular Silicon Compounds I
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Intermolecular Forces and Clusters II
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Structures and Interactions of Ionic Liquids
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Applications of Density Functional Theory to Chemical Reactivity
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Molecular Machines and Motors
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Structure-Property Relationships in Non-Linear Optical Crystals II
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Metal-Metal Bonding
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Organometallic and Coordination Chemistry of the Actinides
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Molecular Catalysis of Rare-Earth Elements
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Single-Molecule Magnets and Related Phenomena
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Polyoxometalate-Based Assemblies and Functional Materials
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Electron Density and Chemical Bonding II
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Applications of Density Functional Theory to Biological and Bioinorganic Chemistry
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Optical Spectra and Chemical Bonding in Transition Metal Complexes
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Optical Spectra and Chemical Bonding in Inorganic Compounds
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50th Anniversary of Electron Counting Paradigms for Polyhedral Molecules
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Nitrosyl Complexes in Inorganic Chemistry, Biochemistry and Medicine II
Carlos Martín-Fernández obtained his PhD from KU Leuven (Belgium) under the supervision of Profs. Jeremy Harvey and Kristine Pierloot studying the electronic structure of transition metal complexes with DFT and ab initio methods. Before that, he studied the Erasmus Mundus Master's in Theoretical Chemistry and Computational Modelling (EMTCCM) in Universidad Autónoma de Madrid (Spain) and worked as a predoctoral researcher at CSIC with Prof. Ibon Alkorta. His research expertise includes the application of high-level computational methods (both ab initio and DFT) to the study of (bio)inorganic chemistry, with a focus on transition metal complexes, chemical bonding, and non-covalent interactions.
Stuart Macgregor obtained his PhD degree from the University of Edinburgh working on the structural and electrochemical properties of metallaboranes. He was awarded a NATO Western European Fellowship to work with Odile Eisenstein in Orsay, where he first encountered DFT. After a post-doctoral position at ANU, Canberra, he took up a lectureship at Heriot-Watt University, Edinburgh, where he was promoted to full Professor in 2009. In 2024 he was appointed Chair of Computational Inorganic Chemistry at the University of St. Andrews. Stuart's research uses computational methods to model the structure and reactivity of transition metal systems in both solution and the solid state. He works in close collaboration with experimentalists and targets applications in catalysis. He received the 2019 RSC Ludwig Mond Award for work on the mechanisms of C–H and C–F activation and the organometallic chemistry of σ-alkane complexes in the solid state.
| SKU | Unavailable |
| ISBN 13 | 9783032015426 |
| ISBN 10 | 3032015421 |
| Title | Computational Methods for the Analysis of Non-Covalent Interactions |
| Author | Carlos Mart N Fern Ndez |
| Series | Structure And Bonding |
| Condition | Unavailable |
| Binding Type | Hardback |
| Publisher | Springer Nature Switzerland AG |
| Year published | 2025-10-28 |
| Number of pages | 314 |
| Cover note | Book picture is for illustrative purposes only, actual binding, cover or edition may vary. |
| Note | Unavailable |




































