We present an implementation of strategies to deposit single-molecule magnets (SMMs) using microcontact printing (uCP). We describe different approaches of CP to print stripes of a sulfur-functionalized dodecamanganese(III,IV) cluster on gold surfaces. Comparison by atomic force microscopy profile analysis of the patterned structures confirms the formation of a chemically stable single layer of SMMs. Images based on chemical contrast, obtained by time-of-flight secondary ion mass spectrometry, confirm the patterned structure
Molecules and nanomaterials can be assembled on surfaces in order to build complex structures and de...
Magnetic molecules ranging from simple organic radicals to single-molecule magnets (SMMs) are intens...
A sulfur-containing single molecule magnet, [Mn12O 12(O2CC6H4SCH3) 16(H2O)4], was assembled from sol...
We present an implementation of strategies to deposit single-molecule magnets (SMMs) using microcont...
The authors present an implementation of strategies to deposit single-mol. magnets (SMMs) using micr...
Encoding and manipulating information through the spin degrees of freedom of individual magnetic mol...
Addressing individual bistable magnetic molecules, known as Single Molecule Magnets (SMMs), is a fas...
International audienceThis paper demonstrates the use of microcontact printing (μCP) and capillary f...
Microcontact printing (µCP) offers a simple and low-cost surface patterning methodology with high ve...
A new method to graft Mn12 magnetic clusters to surface has been investigated. Starting from the pre...
A dodecamanganese(III,IV) cluster, [Mn12O12(OAc)16(H2O)4]·4H2O·2AcOH, is considered to be the protot...
We combined microcontact printing (muCP), the chemical modification of surfaces, and the binding an...
iv Modern patterning and fabrication techniques provide powerful opportunities for the preparation o...
Transferring molecular nanostructures from one surface to another in ultrahigh vacuum (UHV) by mecha...
In this work pathways for the immobilization of intact Mn12 Single molecule magnets on functionalize...
Molecules and nanomaterials can be assembled on surfaces in order to build complex structures and de...
Magnetic molecules ranging from simple organic radicals to single-molecule magnets (SMMs) are intens...
A sulfur-containing single molecule magnet, [Mn12O 12(O2CC6H4SCH3) 16(H2O)4], was assembled from sol...
We present an implementation of strategies to deposit single-molecule magnets (SMMs) using microcont...
The authors present an implementation of strategies to deposit single-mol. magnets (SMMs) using micr...
Encoding and manipulating information through the spin degrees of freedom of individual magnetic mol...
Addressing individual bistable magnetic molecules, known as Single Molecule Magnets (SMMs), is a fas...
International audienceThis paper demonstrates the use of microcontact printing (μCP) and capillary f...
Microcontact printing (µCP) offers a simple and low-cost surface patterning methodology with high ve...
A new method to graft Mn12 magnetic clusters to surface has been investigated. Starting from the pre...
A dodecamanganese(III,IV) cluster, [Mn12O12(OAc)16(H2O)4]·4H2O·2AcOH, is considered to be the protot...
We combined microcontact printing (muCP), the chemical modification of surfaces, and the binding an...
iv Modern patterning and fabrication techniques provide powerful opportunities for the preparation o...
Transferring molecular nanostructures from one surface to another in ultrahigh vacuum (UHV) by mecha...
In this work pathways for the immobilization of intact Mn12 Single molecule magnets on functionalize...
Molecules and nanomaterials can be assembled on surfaces in order to build complex structures and de...
Magnetic molecules ranging from simple organic radicals to single-molecule magnets (SMMs) are intens...
A sulfur-containing single molecule magnet, [Mn12O 12(O2CC6H4SCH3) 16(H2O)4], was assembled from sol...