We investigate the electronic and magnetic properties of TbPc2 single ion magnets adsorbed on a graphene/Ni(111) substrate, by density functional theory (DFT), ab initio complete active space self-consistent field calculations, and X-ray magnetic circular dichroism (XMCD) experiments. Despite the presence of the graphene decoupling layer, a sizable antiferromagnetic coupling between Tb and Ni is observed in the XMCD experiments. The molecule-surface interaction is rationalized by the DFT analysis and is found to follow a relay-like communication pathway, where the radical spin on the organic Pc ligands mediates the interaction between Tb ion and Ni substrate spins. A model Hamiltonian which explicitly takes into account the presence of the spin radical is then developed, and the different magnetic interactions at play are assessed by first-principle calculations and by comparing the calculated magnetization curves with XMCD data. The relay-like mechanism is at the heart of the process through which the spin information contained in the Tb ion is sensed and exploited in carbon-based molecular spintronics devices.

Relay-Like Exchange Mechanism through a Spin Radical between TbPc2 Molecules and Graphene/Ni(111) Substrates

Marocchi S;Candini A;Troiani F;Corradini V;Biagi R;De Renzi V;Del Pennino U;Affronte M;Bellini V
2016

Abstract

We investigate the electronic and magnetic properties of TbPc2 single ion magnets adsorbed on a graphene/Ni(111) substrate, by density functional theory (DFT), ab initio complete active space self-consistent field calculations, and X-ray magnetic circular dichroism (XMCD) experiments. Despite the presence of the graphene decoupling layer, a sizable antiferromagnetic coupling between Tb and Ni is observed in the XMCD experiments. The molecule-surface interaction is rationalized by the DFT analysis and is found to follow a relay-like communication pathway, where the radical spin on the organic Pc ligands mediates the interaction between Tb ion and Ni substrate spins. A model Hamiltonian which explicitly takes into account the presence of the spin radical is then developed, and the different magnetic interactions at play are assessed by first-principle calculations and by comparing the calculated magnetization curves with XMCD data. The relay-like mechanism is at the heart of the process through which the spin information contained in the Tb ion is sensed and exploited in carbon-based molecular spintronics devices.
2016
Istituto Nanoscienze - NANO
Inglese
10
10
9353
9360
https://iris.unimore.it/retrieve/handle/11380/1117899/387666/POST%20PRINT_Relay-Like%20Exchange%20Mechanism%20through%20a%20Spin%20Radical.pdf
Sì, ma tipo non specificato
density functional theory
graphene
metal-organic interface
molecular magnetism
spintronics
18
info:eu-repo/semantics/article
262
Marocchi, S; Candini, A; Klar, D; Van Den Heuvel, W; Huang, H; Troiani, F; Corradini, V; Biagi, R; De Renzi, V; Klyatskaya, S; Kummer, K; Brookes, Nb;...espandi
01 Contributo su Rivista::01.01 Articolo in rivista
none
   Molecular Quantum Spintronics
   MOQUAS
   FP7
   610449
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/327354
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