We present an implementation of strategies to deposit single-molecule magnets (SMMs) using microcontact printing (μCP). We describe different approaches of μCP 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.

Mannini, M., Bonacchi, D., Zobbi, L., PIRAS F., M., SPEETS E., A., Caneschi, A., et al. (2005). ADVANCES IN SINGLE-MOLECULE MAGNET SURFACE PATTERNING THROUGH MICROCONTACT PRINTING. NANO LETTERS, 5(7), 1435-1438 [10.1021/nl0508016].

ADVANCES IN SINGLE-MOLECULE MAGNET SURFACE PATTERNING THROUGH MICROCONTACT PRINTING

Magnani, Agnese;
2005-01-01

Abstract

We present an implementation of strategies to deposit single-molecule magnets (SMMs) using microcontact printing (μCP). We describe different approaches of μCP 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.
2005
Mannini, M., Bonacchi, D., Zobbi, L., PIRAS F., M., SPEETS E., A., Caneschi, A., et al. (2005). ADVANCES IN SINGLE-MOLECULE MAGNET SURFACE PATTERNING THROUGH MICROCONTACT PRINTING. NANO LETTERS, 5(7), 1435-1438 [10.1021/nl0508016].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11365/8399
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