Eugenii U Donev, J Todd Hastings
Index: Nano Lett. 9(7) , 2715-8, (2009)
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We demonstrate here the first focused electron-beam-induced deposition (EBID) of nanostructures using a liquid precursor. We have deposited sub-50 nm platinum (Pt) wires and dots from a dilute, aqueous solution of chloroplatinic acid. Existing EBID processes rely on the electron-beam stimulated decomposition of gaseous precursors; as a result, the deposits are highly contaminated (up to 75 at. % carbon or 60 at. % phosphorus for Pt processes). In contrast, we show that deposition of platinum by electron-beam reduction of platinum ions from solution leads to high-purity deposits (approximately 10 at. % chlorine contamination) at rates at least ten times higher than those obtained with other platinum precursors. Liquid-phase EBID offers a new route to deterministic, three-dimensional, nanometer-scale structures composed of multiple materials without complex multistep processing. Thus, it may prove important for prototyping and low-volume production of nanoscale devices and for repair and modification of nanoscale masks and templates used in high-volume production.
Structure | Name/CAS No. | Molecular Formula | Articles |
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Chloroplatinic acid
CAS:16941-12-1 |
H2Cl6Pt |
Direct deposition of gold nanoplates and porous platinum on ...
2012-12-05 [Phys. Chem. Chem. Phys. 14(45) , 15793-801, (2012)] |
[Bronchial asthma due to inhaled chloroplatinate].
1984-11-01 [Sangyo. Igaku. 26(6) , 500-9, (1984)] |
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1986-02-01 [Gig. Tr. Prof. Zabol. (2) , 48-9, (1986)] |
[Effect of platinum and zirconium on IgM immune response in ...
1987-02-01 [Nihon Eiseigaku Zasshi. 41(6) , 951-6, (1987)] |
Electrochemical platinum coatings for improving performance ...
2002-12-01 [Biomaterials 23(23) , 4515-21, (2002)] |
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