Electronic Structure Crystallography and Functional Motifs of Materials

Regular price €129.99
Quantity:
Ships in 10-20 days
Delivery/Collection within 10-20 working days
Shipping & Delivery
A01=Guo-Cong Guo
A01=Xiao-Ming Jiang
Author_Guo-Cong Guo
Author_Xiao-Ming Jiang
Category=PHFC
Category=PNR
Category=PNT
eq_bestseller
eq_isMigrated=1
eq_isMigrated=2
eq_nobargain
eq_non-fiction
eq_science
Hartree-Fock method
Independent atom model
kappa model
Kohn-Sham method
multipole model
nano-catalytic materials
nonlinear optical materials
photochromic materials
quantum chemistry
spin density model
X-ray crystallography

Product details

  • ISBN 9783527352203
  • Weight: 694g
  • Dimensions: 170 x 244mm
  • Publication Date: 14 Feb 2024
  • Publisher: Wiley-VCH Verlag GmbH
  • Publication City/Country: DE
  • Product Form: Hardback
Secure checkout Fast Shipping Easy returns
Electronic Structure Crystallography and Functional Motifs of Materials

Detailed resource on the method of electronic structure crystallography for revealing the experimental electronic structure and structure-property relationships of functional materials

Electronic Structure Crystallography and Functional Motifs of Materials describes electronic structure crystallography and functional motifs of materials, two of the most challenging topics to realize the rational design of high-performance functional materials, emphasizing the physical properties and structure-property relationships of functional materials using nonlinear optical materials as examples.

The text clearly illustrates how to extract experimental electronic structure information and relevant physicochemical properties of materials based on the theories and methods in X-ray crystallography and quantum chemistry. Practical skills of charge density studies using experimental X-ray sources are also covered, which are particularly important for the future popularization and development of electron structure crystallography.

This book also introduces the related theories and refinement techniques involved in using scattering methods (mainly X-ray single-crystal diffraction, as well as polarized neutron scattering and Compton scattering) to determine experimental electronic structures, including the experimental electron density, experimental electron wavefunction, and experimental electron density matrix of crystalline materials.

Electronic Structure Crystallography and Functional Motifs of Materials includes information on:

  • Basic framework and assumptions of the first-principle calculations, density matrix and density function, and Hartree-Fock (HF) and Kohn-Sham (KS) methods
  • Analysis of topological atoms in molecules, chemical interaction analysis, coarse graining and energy partition of the density matrix, and restricted space partition
  • Principles of electronic structure measurement, including thermal vibration analysis, scattering experiments, and refinement algorithm for experimental electronic structure
  • Independent atom model, multipole model, X-ray constrained wavefunction model, and other electron density models

Electronic Structure Crystallography and Functional Motifs of Materials is an ideal textbook or reference book for graduate students and researchers in chemistry, physics, and material sciences for studying the structures and properties of functional crystalline materials.

Guo-Cong Guo is Professor and Director of the State Key Lab of Structural Chemistry at Fujian Institute of Research on the Structure of Matter (FJIRSM), Chinese Academy of Sciences, P. R. China, currently focusing on the structure-property relationships studies of nonlinear optical, photochromic and nano-catalytic materials.

Xiao-Ming Jiang is Professor at Fujian Institute of Research on the Structure of Matter (FJIRSM), Chinese Academy of Sciences, P. R. China, currently focusing on the experimental electronic structure and total scattering techniques for uncovering interesting structural features underneath physical and chemical properties.

More from this author