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  2. Scanning probe lithography - Wikipedia

    en.wikipedia.org/wiki/Scanning_probe_lithography

    Scanning probe lithography[1] (SPL) describes a set of nanolithographic methods to pattern material on the nanoscale using scanning probes. It is a direct-write, mask-less approach which bypasses the diffraction limit and can reach resolutions below 10 nm. [2] It is considered an alternative lithographic technology often used in academic and ...

  3. Dip-pen nanolithography - Wikipedia

    en.wikipedia.org/wiki/Dip-Pen_Nanolithography

    Dip pen nanolithography (DPN) is a scanning probe lithography technique where an atomic force microscope (AFM) tip is used to directly create patterns on a substrate. [1] It can be done on a range of substances with a variety of inks. A common example of this technique is exemplified by the use of alkane thiolates to imprint onto a gold surface ...

  4. Scanning probe microscopy - Wikipedia

    en.wikipedia.org/wiki/Scanning_probe_microscopy

    Technology portal. v. t. e. Scanning probe microscopy (SPM) is a branch of microscopy that forms images of surfaces using a physical probe that scans the specimen. SPM was founded in 1981, with the invention of the scanning tunneling microscope, an instrument for imaging surfaces at the atomic level. The first successful scanning tunneling ...

  5. Nanolithography - Wikipedia

    en.wikipedia.org/wiki/Nanolithography

    Nanoelectronics. Nanolithography (NL) is a growing field of techniques within nanotechnology dealing with the engineering (patterning e.g. etching, depositing, writing, printing etc) of nanometer -scale structures on various materials. The modern term reflects on a design of structures built in range of 10 −9 to 10 −6 meters, i.e. nanometer ...

  6. Vibrational analysis with scanning probe microscopy - Wikipedia

    en.wikipedia.org/wiki/Vibrational_analysis_with...

    The technique of vibrational analysis with scanning probe microscopy allows probing vibrational properties of materials at the submicrometer scale, and even of individual molecules. [1] [2] [3] This is accomplished by integrating scanning probe microscopy (SPM) and vibrational spectroscopy ( Raman scattering or/and Fourier transform infrared ...

  7. Non-contact atomic force microscopy - Wikipedia

    en.wikipedia.org/wiki/Non-contact_atomic_force...

    Non-contact atomic force microscopy (nc-AFM), also known as dynamic force microscopy (DFM), is a mode of atomic force microscopy, which itself is a type of scanning probe microscopy. In nc-AFM a sharp probe is moved close (order of Angstroms) to the surface under study, the probe is then raster scanned across the surface, the image is then ...

  8. Thermochemical nanolithography - Wikipedia

    en.wikipedia.org/wiki/Thermochemical_nanolithography

    Thermochemical nanolithography ( TCNL) or thermochemical scanning probe lithography ( tc-SPL) is a scanning probe microscopy -based nanolithography technique which triggers thermally activated chemical reactions to change the chemical functionality or the phase of surfaces. Chemical changes can be written very quickly through rapid probe ...

  9. Thermal scanning probe lithography - Wikipedia

    en.wikipedia.org/wiki/Thermal_scanning_probe...

    Thermal polymer decomposition. Thermal scanning probe lithography (t-SPL) is a form of scanning probe lithography [1] (SPL) whereby material is structured on the nanoscale using scanning probes, primarily through the application of thermal energy. Related fields are thermo-mechanical SPL (see also Millipede memory), thermochemical SPL[2][3] (or ...

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