2022-09-06T16:15:18Z
2022-09-06T16:15:18Z
2022-04-14
2022-09-06T16:15:18Z
Heterometallic lanthanide [LnLn′] coordination complexes that are accessible thermodynamically are very scarce because the metals of this series have very similar chemical behaviour. Trinuclear systems of this category have not been reported. A coordination chemistry scaffold has been shown to produce molecules of type [LnLn′Ln] of high purity, i.e. exhibiting high metal distribution ability, based on their differences in ionic radius. Through a detailed analysis of density functional theory (DFT) based calculations, we discern the energy contributions that lead to the unparalleled chemical selectivity of this molecular system. Some of the previously reported examples are compared here with the newly prepared member of this exotic list, [Er2Pr(LA)2(LB)2(py)(H2O)2](NO3) (1) (H2LA and H2LB are two β-diketone ligands). A magnetic analysis extracted from magnetization and calorimetry determinations identifies the necessary attributes for it to act as an addressable, conditional multiqubit spin-based quantum gate. Complementary ab initio calculations confirm the feasibility of these complexes as composite quantum gates, since they present well-isolated ground states with highly anisotropic and distinct g-tensors. The electronic structure of 1 has also been analyzed by EPR. Pulsed experiments have allowed the establishment of the quantum coherence of the transitions within the relevant spin states, as well as the feasibility of a coherent control of these states via nutation experiments.
Article
Published version
English
Ordinadors quàntics; Estructura electrònica; Nanotecnologia; Quantum computers; Electronic structure; Nanotechnology
Royal Society of Chemistry
Reproducció del document publicat a: https://doi.org/10.1039/D2SC00436D
Chemical Science, 2022, vol. 13, p. 5574-5581
https://doi.org/10.1039/D2SC00436D
info:eu-repo/grantAgreement/EC/H2020/862893/EU//FATMOLS
cc by-nc (c) Maniaki, Diamantoula et al., 2022
http://creativecommons.org/licenses/by-nc/3.0/es/