The electronic structure of isolated bis(phthalocyaninato) terbium(ill) molecules, a novel single-molecular-magnet (SMM), supported on the Cu(111) surface has been characterized by density functional theory and scanning tunneling spectroscopy. These studies reveal that the interaction with the metal surface preserves both the molecular structure and the large spin magnetic moment of the metal center. The 4f electron states are not perturbed by the adsorption while a strong molecular/metal interaction can induce the suppression of the minor spin contribution delocalized over the molecular ligands. The calculations show that the inherent spin magnetic moment of the molecule is only weakly affected by the interaction with the surface and sugge...
The magnetic properties of molecular structures can be tailored by chemical synthesis or bottom-up a...
Single molecule magnets (SMMs) form a new class of magnetic materials consisting of identical nanosc...
Magnetic molecules are auspicious candidates to act as functional units in molecular spintronics. In...
The electronic structure of isolated bis(phthalocyaninato) terbium(III) molecules, a novel single-mo...
Single molecule magnets (SMMs) play an important role in the field of molecular spintronics.They hav...
Abstract: The magnetic properties of isolated TbPc2 molecules supported on a Cu(100) surface are inv...
Single-molecule magnets represent the smallest stable magnetic entities available to technology, wit...
Single-molecule magnets (SMMs) are among the most promising molecular systems for the development o...
We present a comprehensive study of Er(trensal) single-ion magnets deposited in ultrahigh vacuum ont...
Results of an ab initio DFT (density functional theory) investigation of the paramagnetic vanadyl-ph...
Single-molecule nanomagnets have unique quantum properties, and their potential applications require...
Chemically robust single-molecule magnets (SMMs) with sufficiently high blocking temperatures TB are...
The magnetic properties of molecular structures can be tailored by chemical synthesis or bottom-up a...
The spin and orbital configuration of magnetic metal phthalocyanines (MPcs) deposited on metallic su...
Encoding and manipulating information through the spin degrees of freedom of individual magnetic mol...
The magnetic properties of molecular structures can be tailored by chemical synthesis or bottom-up a...
Single molecule magnets (SMMs) form a new class of magnetic materials consisting of identical nanosc...
Magnetic molecules are auspicious candidates to act as functional units in molecular spintronics. In...
The electronic structure of isolated bis(phthalocyaninato) terbium(III) molecules, a novel single-mo...
Single molecule magnets (SMMs) play an important role in the field of molecular spintronics.They hav...
Abstract: The magnetic properties of isolated TbPc2 molecules supported on a Cu(100) surface are inv...
Single-molecule magnets represent the smallest stable magnetic entities available to technology, wit...
Single-molecule magnets (SMMs) are among the most promising molecular systems for the development o...
We present a comprehensive study of Er(trensal) single-ion magnets deposited in ultrahigh vacuum ont...
Results of an ab initio DFT (density functional theory) investigation of the paramagnetic vanadyl-ph...
Single-molecule nanomagnets have unique quantum properties, and their potential applications require...
Chemically robust single-molecule magnets (SMMs) with sufficiently high blocking temperatures TB are...
The magnetic properties of molecular structures can be tailored by chemical synthesis or bottom-up a...
The spin and orbital configuration of magnetic metal phthalocyanines (MPcs) deposited on metallic su...
Encoding and manipulating information through the spin degrees of freedom of individual magnetic mol...
The magnetic properties of molecular structures can be tailored by chemical synthesis or bottom-up a...
Single molecule magnets (SMMs) form a new class of magnetic materials consisting of identical nanosc...
Magnetic molecules are auspicious candidates to act as functional units in molecular spintronics. In...