Towards nanowriting on plastics: dip-pen nanolithography of acrylamido-functionalized oligonucleotides on polystyrene.
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Summary
The final AFM characterization showed significant changes especially in demodulation images which may be an indication that molecular recognition between complementary oligos has occurred.
- Type
- article
- Published
- 2010-08-03
- Cited by
- 3
- References
- 26
- OpenAlex
- https://openalex.org/W21567539
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:41235201
Keywords
Geography
References
- Biopolymer synthesis on polypropylene supports. I. Oligonucleotides.
- Detection of Mycoplasma pneumoniae by polymerase chain reaction and nonradioactive hybridization in microtiter plates
- Use of Atomic Force Microscopy for Making Addresses in DNA Coatings
- Direct Patterning of Modified Oligonucleotides on Metals and Insulators by Dip-Pen Nanolithography
- Protein nanostructures formed via direct-write dip-pen nanolithography.
- DNA nanofilm thickness measurement on microarray in air and in liquid using an atomic force microscope.
- The use of 96-well polystyrene plates for DNA hybridization-based assays: an evaluation of different approaches to oligonucleotide immobilization.
- Nanoscale protein patterning by imprint lithography
- Dip-Pen Nanolithography: What Controls Ink Transport?
- "Dip-Pen" nanolithography
- A novel 4-base-recognizing RNA cutter that can remove the single 3' terminal nucleotides from RNA molecules.
- Nanopatterning proteins and peptides.
- Improved immobilization of DNA to microwell plates for DNA-DNA hybridization.
- Nanoscale patterning of protein using electron beam lithography of organosilane self-assembled monolayers.
- Fabrication of DNA microarrays onto poly(methyl methacrylate) with ultraviolet patterning and microfluidics for the detection of low-abundant point mutations.
- Protein Nanoarrays Generated By Dip-Pen Nanolithography
- Dip-pen patterning and surface assembly of peptide amphiphiles.
- Protein nanoarray on Prolinker™ surface constructed by atomic force microscopy dip‐pen nanolithography for analysis of protein interaction
- DNA detection on plastic: surface activation protocol to convert polycarbonate substrates to biochip platforms.
- Anomalous surface diffusion in nanoscale direct deposition processes.
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