Issue 8, 2018

Heteroleptic chiral bis(phthalocyaninato) terbium double-decker single-ion magnets

Abstract

For the purpose of engineering magnetic anisotropy, chiral binaphthyl substituents with slight electron-withdrawing ability and dibutylamino substituents with intense electron-donating nature are incoporated onto the periphery of each phthalocyanine ligand in the bis(phthalocyaninato) terbium double-decker compound, resulting in the chiral heteroleptic bis(phthalocyaninato) terbium complex (R)/(S)-[Pc(OBNP)4]Tb{Pc[N(C4H9)2]8} (R/S-1) {Pc(OBNP)4 = {tetrakis(dinaphtho[1,2-e:1′,2′-g]-1,4-dioxocine)[2,3-b;2′,3′-k;2′′,3′′-t;2′′′,3′′′-c′]phthalocyanine}; Pc[N(C4H9)2]8 = [2,3,9,10,16,17,23,24-octakis(dibutylamino)phthalocyanine]}. Magnetic studies reveal the typical single-ion magnet (SIM) nature of this chiral bis(phthalocyaninato) terbium double-decker with spin reversal energy barrier of 638 K. A butterfly-shaped magnetic hysteresis loop was observed at even 25 K for R-1 under the sweep rate of 500 Oe s−1. The performance of this SIM is well rationalized on the basis of theoretical analysis of the electrostatic potential according to calculations using the density functional theory method.

Graphical abstract: Heteroleptic chiral bis(phthalocyaninato) terbium double-decker single-ion magnets

Supplementary files

Article information

Article type
Research Article
Submitted
28 May 2018
Accepted
20 Jun 2018
First published
21 Jun 2018

Inorg. Chem. Front., 2018,5, 2006-2012

Heteroleptic chiral bis(phthalocyaninato) terbium double-decker single-ion magnets

Y. Chen, F. Ma, Y. Zhang, L. Zhao, K. Wang, D. Qi, H. Sun and J. Jiang, Inorg. Chem. Front., 2018, 5, 2006 DOI: 10.1039/C8QI00493E

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