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Chemistry

D-Index
49
Citations
9510
World Ranking
14746
National Ranking
582

Overview

Marco Evangelisti is affiliated with the Spanish National Research Council in Spain, focusing primarily on Materials Science with a significant number of publications in this field. Their research spans multiple subfields, including Materials Chemistry, Electronic, Optical and Magnetic Materials, Condensed Matter Physics, Inorganic Chemistry, and Electrical and Electronic Engineering.

The scientist's work extensively covers topics related to magnetism and crystallography. Key topics include Crystallization and Solubility Studies, X-ray Diffraction in Crystallography, Magnetism in Coordination Complexes, Magnetic and Transport Properties of Perovskites and Related Materials, Lanthanide and Transition Metal Complexes, Ferroelectric and Piezoelectric Materials, and Advanced Condensed Matter Physics.

Marco Evangelisti has contributed to a variety of journals with some publications appearing multiple times in specific venues. Frequent publication outlets include The Cambridge Structural Database, Dalton Transactions, Journal of Alloys and Compounds, Journal of the American Chemical Society, and Chemical Communications.

  • A Gd12Na6 Molecular Quadruple-Wheel with a Record Magnetocaloric Effect at Low Magnetic Fields and Temperatures (2023, Journal of the American Chemical Society)
  • [Fe 15]: a frustrated, centred tetrakis hexahedron (2021, Chemical Communications)
  • Large magnetocaloric effect in EuGd2O4 and EuDy2O4 (2021, Journal of Alloys and Compounds)
  • Gd-based molecular coolants: Aggregating for better magnetocaloric effect (2024, Aggregate)
  • Magnetism of Dendrimer-Coated Gold Nanoparticles: A Size and Functionalization Study (2021, The Journal of Physical Chemistry C)

Collaboration is a significant aspect of their research activities. Frequent co-authors include Euan K. Brechin, David Gracia, Giulia Lorusso, Scott J. Dalgarno, and Constantinos J. Milios, reflecting active partnerships in their scientific endeavors.

Best Publications

  • Recipes for enhanced molecular cooling.

    Marco Evangelisti;Euan K. Brechin

  • Co-Ln mixed-metal phosphonate grids and cages as molecular magnetic refrigerants

    Yan Zhen Zheng;Marco Evangelisti;Floriana Tuna;Richard E P Winpenny

  • A dense metal-organic framework for enhanced magnetic refrigeration

    Giulia Lorusso;Joseph W. Sharples;Elias Palacios;Olivier Roubeau

  • Cryogenic magnetocaloric effect in a ferromagnetic molecular dimer.

    Marco Evangelisti;Olivier Roubeau;Elias Palacios;Agustín Camón

  • Large Magnetocaloric Effect in a Wells–Dawson Type {Ni6Gd6P6} Cage

    Yan Zhen Zheng;Marco Evangelisti;Richard E P Winpenny

  • [MnIII4LnIII4] Calix[4]arene Clusters as Enhanced Magnetic Coolers and Molecular Magnets

    Georgios Karotsis;Stuart Kennedy;Simon J. Teat;Christine M. Beavers

  • Magnetothermal properties of molecule-based materials

    Marco Evangelisti;Fernando Luis;L. J. de Jongh;M. Affronte

  • Molecular coolers: The case for [CuII5GdIII4]

    Stuart K. Langley;Nicholas F. Chilton;Boujemaa Moubaraki;Thomas Hooper

  • Lanthanoid Single-Ion Magnets Based on Polyoxometalates with a 5-fold Symmetry: The Series [LnP5W30O110]12– (Ln3+ = Tb, Dy, Ho, Er, Tm, and Yb)

    S Cardona-Serra;J M Clemente-Juan;E Coronado;A Gaita-Ariño

  • A calix[4]arene 3d/4f magnetic cooler

    Georgios Karotsis;Marco Evangelisti;Scott J. Dalgarno;Euan K. Brechin

  • Mixed-Valent Mn Supertetrahedra and Planar Discs as Enhanced Magnetic Coolers

    Maria Manoli;Anna Collins;Simon Parsons;Andrea Candini

  • Co–Gd phosphonate complexes as magnetic refrigerants

    Yan Zhen Zheng;Marco Evangelisti;Richard E P Winpenny

  • Gd-Based Single-Ion Magnets with Tunable Magnetic Anisotropy: Molecular Design of Spin Qubits

    M. J. Martínez-Pérez;M. J. Martínez-Pérez;S. Cardona-Serra;C. Schlegel;F. Moro

  • A Ferromagnetic Mixed-Valent Mn Supertetrahedron: Towards Low-Temperature Magnetic Refrigeration with Molecular Clusters†

    Maria Manoli;Russell D. L. Johnstone;Simon Parsons;Mark Murrie

  • Molecular prototypes for spin-based CNOT and SWAP quantum gates.

    F. Luis;A. Repollés;M. J. Martínez-Pérez;D. Aguilà

  • The Importance of Being Exchanged: [GdIII4MII8(OH)8(L)8(O2CR)8]4+ Clusters for Magnetic Refrigeration

    Thomas N. Hooper;Juergen Schnack;Stergios Piligkos;Marco Evangelisti

  • Spin-enhanced magnetocaloric effect in molecular nanomagnets

    Marco Evangelisti;Andrea Candini;Alberto Ghirri;Marco Affronte

  • Magnetic structure and magnetocalorics of GdPO4

    Elias Palacios;J. A. Rodríguez-Velamazán;Marco Evangelisti;G. J. McIntyre

  • Increasing the dimensionality of cryogenic molecular coolers: Gd-based polymers and metal–organic frameworks

    Giulia Lorusso;Maria A. Palacios;Gary S. Nichol;Euan K. Brechin

  • Quantum signatures of a molecular nanomagnet in direct magnetocaloric measurements

    Joseph W Sharples;David Collison;Eric J L McInnes;Juergen Schnack

  • 1,2,3-Triazolate-bridged tetradecametallic transition metal clusters [M14(L)6O6(OMe)18X6] (M = FeIII, CrIII and VIII/IV) and related compounds: Ground-state spins ranging from S = 0 to S = 25 and spin-enhanced magnetocaloric effect

    Rachel Shaw;Rebecca H. Laye;Leigh F. Jones;David M. Low

Frequent Co-Authors

Euan K. Brechin
Euan K. Brechin University of Edinburgh
Olivier Roubeau
Olivier Roubeau Universidad de Zaragoza
Constantinos J. Milios
Constantinos J. Milios University of Crete
Richard E. P. Winpenny
Richard E. P. Winpenny University of Manchester
Eric J. L. McInnes
Eric J. L. McInnes University of Manchester
Eugenio Coronado
Eugenio Coronado University of Valencia
Simon J. Teat
Simon J. Teat Lawrence Berkeley National Laboratory
Grigore A. Timco
Grigore A. Timco University of Manchester
David Collison
David Collison University of Manchester
Zachary Fisk
Zachary Fisk University of California, Irvine

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