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Improving the molecular spin qubit performance in zirconium MOF composites by mechanochemical dilution and fullerene encapsulation.
Vujevic, Lucija; Karadeniz, Bahar; Cindro, Nikola; Krajnc, Andraz; Mali, Gregor; Mazaj, Matjaz; Avdoshenko, Stanislav M; Popov, Alexey A; Zilic, Dijana; Uzarevic, Krunoslav; Kveder, Marina.
Afiliação
  • Vujevic L; Ruder Boskovic Institute Bijenicka cesta 54 10000 Zagreb Croatia bahar.karadeniz@irb.hr dijana.zilic@irb.hr krunoslav.uzarevic@irb.hr kveder@irb.hr.
  • Karadeniz B; Ruder Boskovic Institute Bijenicka cesta 54 10000 Zagreb Croatia bahar.karadeniz@irb.hr dijana.zilic@irb.hr krunoslav.uzarevic@irb.hr kveder@irb.hr.
  • Cindro N; Department of Chemistry, University of Zagreb 10000 Zagreb Croatia.
  • Krajnc A; National Institute of Chemistry Hajdrihova 19 SI-1001 Ljubljana Slovenia.
  • Mali G; National Institute of Chemistry Hajdrihova 19 SI-1001 Ljubljana Slovenia.
  • Mazaj M; National Institute of Chemistry Hajdrihova 19 SI-1001 Ljubljana Slovenia.
  • Avdoshenko SM; Leibniz IFW Dresden Helmholtzstrasse 20 D-01069 Dresden Germany.
  • Popov AA; Leibniz IFW Dresden Helmholtzstrasse 20 D-01069 Dresden Germany.
  • Zilic D; Ruder Boskovic Institute Bijenicka cesta 54 10000 Zagreb Croatia bahar.karadeniz@irb.hr dijana.zilic@irb.hr krunoslav.uzarevic@irb.hr kveder@irb.hr.
  • Uzarevic K; Ruder Boskovic Institute Bijenicka cesta 54 10000 Zagreb Croatia bahar.karadeniz@irb.hr dijana.zilic@irb.hr krunoslav.uzarevic@irb.hr kveder@irb.hr.
  • Kveder M; Ruder Boskovic Institute Bijenicka cesta 54 10000 Zagreb Croatia bahar.karadeniz@irb.hr dijana.zilic@irb.hr krunoslav.uzarevic@irb.hr kveder@irb.hr.
Chem Sci ; 14(35): 9389-9399, 2023 Sep 13.
Article em En | MEDLINE | ID: mdl-37712041
ABSTRACT
Enlarging the quantum coherence times and gaining control over quantum effects in real systems are fundamental for developing quantum technologies. Molecular electron spin qubits are particularly promising candidates for realizing quantum information processing due to their modularity and tunability. Still, there is a constant search for tools to increase their quantum coherence times. Here we present how the mechanochemical introduction of active spin qubits in the form of 10% diluted copper(ii)-porphyrins in the diamagnetic PCN-223 and MOF-525 zirconium-MOF polymorph pair can be achieved. Furthermore, the encapsulation of fullerene during the MOF synthesis directs the process exclusively toward the rare PCN-223 framework with a controllable amount of fullerene in the framework channels. In addition to the templating role, the incorporation of fullerene increases the electron spin-lattice and phase-memory relaxation times, T1 and Tm. Besides decreasing the amount of nuclear spin-bearing solvent guests in the non-activated qubit frameworks, the observed improved relaxation times can be rationalized by modulating the phonon density of states upon fullerene encapsulation.

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2023 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2023 Tipo de documento: Article