"Dip-Pen" nanolithography
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Summary
A direct-write "dip-pen" nanolithography (DPN) has been developed to deliver collections of molecules in a positive printing mode, making DPN a potentially useful tool for creating and functionalizing nanoscale devices.
- Type
- article
- Published
- 1999-01-29
- Cited by
- 2,262
- References
- 47
- OpenAlex
- https://openalex.org/W2015498249
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:27011581
Keywords
Dip-pen nanolithography, Nanolithography, Nanotechnology, Nanoscopic scale, Laser linewidth
References
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- Atomic scale imaging of alkanethiolate monolayers at gold surfaces with atomic force microscopy
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- A nanoplotter with both parallel and serial writing capabilities
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- Polymer microstructures formed by moulding in capillaries
- Sub-10 nm lithography with self-assembled monolayers
- Influence of capillary condensation of water on nanotribology studied by force microscopy
- Patterning a Preformed, Reactive SAM Using Microcontact Printing
Cited by
- Electrostatic nanolithography in polymers using atomic force microscopy
- Nanoscale Engineering of Biomaterial Surfaces
- Inkjet-printed multicolor arrays of highly luminescent nanocrystal-based nanocomposites.
- Towards nanowriting on plastics: dip-pen nanolithography of acrylamido-functionalized oligonucleotides on polystyrene.
- One step multifunctional micropatterning of surfaces using asymmetric glow discharge plasma polymerization.
- Structuration and integration of magnetic nanoparticles on surfaces and devices.
- Surface Coating as a Key Parameter in Engineering Neuronal Network Structures In Vitro
- As flat as it gets: ultrasmooth surfaces from template-stripping procedures.
- Electroanalysis of single-nucleotide polymorphism by hairpin DNA architectures
- Optimizing Pin-Printed and Hydrosilylated Microarray Spot Density on Porous Silicon Platforms.
- Interfacial Electron Beam Lithography: Chemical Monolayer Nanopatterning via Electron-Beam-Induced Interfacial Solid-Phase Oxidation.
- Metal and Semiconductor Nanoparticle Self-Assembly.
- Design and fabrication of microstructured and switchable biological surfaces
- Bioinspired Two- and Three-Dimensional Nanostructures
- Scanning Probe Microscopy: Applications for Genomic Research
- Using Etching, Electroplating and Lithography as a Laboratory Sequence in Chemistry of Art and Nanotechnology Themed Physical Science Courses
- Lipid bilayer membrane arrays: fabrication and applications.
- Nanomanufacturing : nano-structured materials made layer-by-layer.
- Migration channels produced by laser ablation for substrate endothelialization
- Utilization of nanostructured surfaces for sensing applications and the use of nanoentities for the fabrication of new materials
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