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Functional Molecular Materials Insights—a Themed Issue in Honour of Professor Manuel Almeida on the Occasion of His 70th Birthday

Functional Molecular Materials Insights—a Themed Issue in Honour of Professor Manuel Almeida on the Occasion of His 70th Birthday

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This compilation is a reprint of articles from a Special Issue of Magnetochemistry (ISSN 2312-7481). This Special Issue belongs to the section "Magnetic Materials", published online in the open access journal. “Insights into Functional Molecular Materials—A Themed Collection Honoring Professor Manuel Almeida on His 70th Birthday”, invites you to join the state-of-the-art world of functional molecular materials by illustrating the remarkable interdisciplinary nature of the field, seamlessly blending the fields of preparative chemistry and condensed matter physics. Discover how these innovative materials are driving advances in technology, from molecular magnetism and spintronics to quantum computing.Written by leading experts, each article provides an in-depth look at the synthesis, properties, and applications of these versatile molecules. Whether you are an expert researcher or a young scientist, discover how their unique chemical and physical properties respond to external stimuli, placing them at the forefront of modern scientific breakthroughs.

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Keywords

  • 1D organic conductor
  • 2D metals
  • anisotropic superconductivity
  • band structure reshaping
  • band structures
  • bias stress effect
  • CDW (charge-density waves)
  • charge density wave
  • coexistence of standard and Dirac fermions
  • conductivity
  • Crystal structure
  • Cu(II)
  • Dirac electron systems
  • donor-anion interactions
  • Dysprosium(III)
  • electro-crystallization
  • electron–electron correlated system
  • ESR spectral analysis
  • Fermi surface
  • first-principles band calculation
  • first-principles DFT calculation
  • GaMo4Se8
  • high pressure vibrational spectroscopy
  • hyperfine decoupling
  • Hysteresis
  • Jahn–Teller distortion
  • Jahn–Teller effect
  • kondo coupling
  • lacunar spinel
  • lanthanide metal–organic frameworks
  • Magnetism
  • magnetoelastic coupling
  • magnetoresistance
  • metal dithiolene complexes
  • metal/insulator/organic semiconductor/metal
  • molecular magentism
  • muon spin relaxation
  • n/a
  • Nernst effect
  • non-thermal equilibrium process
  • organic conductor
  • organic Conductors
  • organic Dirac electron systems
  • organic field-effect transistors
  • organic metal
  • organic semiconductors
  • organic superconductor
  • oxalate
  • phase diagram
  • phase transition
  • quantum oscillations
  • relaxation processes
  • resolution enhancement
  • SDW (spin-density wave)
  • self-doping
  • simulation-free spectra analysis
  • single-component molecular conductors
  • single-ion magnets
  • single-molecule magnets
  • skyrmions
  • spin ladder
  • spin qubit
  • spin-charge decoupling
  • spin-Peierls
  • spin-Peierls transition
  • strategies to minimize decoherence
  • Superconductivity
  • tetracyanoquinodimethane
  • thema EDItEUR::P Mathematics and Science
  • thema EDItEUR::P Mathematics and Science::PN Chemistry
  • thema EDItEUR::P Mathematics and Science::PN Chemistry::PNK Inorganic chemistry
  • tight-binding model
  • TMTSF
  • vibronic coupling
  • wavelet packet transform

Links

DOI: 10.3390/books978-3-7258-1795-5

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