Sub-nanometer Resolution

Sub-nanometer resolution is the ability to distinguish or measure features separated by less than one nanometer, enabling engineers to characterize matter at near-atomic scales. It relies on a highly localized probe or short-wavelength signal, precise positioning, environmental stability, and analysis that separates genuine nanoscale features from instrument noise. In engineering, this capability supports scanning probe and electron microscopy, surface metrology, semiconductor inspection, nanomaterial characterization, and evaluation of fabrication tolerances, helping researchers link atomic-scale structure to electrical, mechanical, and chemical performance.

Sub-nanometer Resolution - Related Videos

Research

JoVE Journal - Engineering
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Sub-nanometer Resolution Imaging with Amplitude-modulation Atomic Force Microscopy in Liquid

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Cited by 39 •

2016

We present a method for achieving sub-nanometer resolution images with amplitude-modulation (tapping mode) atomic force microscopy in liquid. The method is demonstrated on commercial atomic force microscopes. We explain the rationale behind our choices of parameters and suggest strategies for resolution optimization.

Research

JoVE Journal - Biology

Fluorescence Imaging with One-nanometer Accuracy (FIONA)

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Cited by 11 •

2014

Single fluorophores can be localized with nanometer precision using FIONA. Here a summary of the FIONA technique is reported, and how to carry out FIONA experiments is described.

Three-dimensional Optical-resolution Photoacoustic Microscopy

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Cited by 27 •

2011

Optical-resolution photoacoustic microscopy (OR-PAM) is an emerging technology capable of imaging optical absorption contrasts in vivo with cellular resolution and sensitivity. Here, we provide a visualized instruction on the experimental protocols of OR-PAM, including system configuration, system alignment, typical in vivo experimental procedures, and functional imaging schemes.

Research

JoVE Journal - Biology
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Test Samples for Optimizing STORM Super-Resolution Microscopy

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Cited by 48 •

2013

We describe the preparation of three test samples and how they can be used to optimize and assess the performance of STORM microscopes. Using these examples we show how to acquire raw data and then process it to acquire super-resolution images in cells of approximately 30-50 nm resolution.

Super-resolution Imaging of the Bacterial Division Machinery

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Cited by 17 •

2013

We describe a super-resolution imaging method to probe the structural organization of the bacterial FtsZ-ring, an essential apparatus for cell division. This method is based on quantitative analyses of photoactivated localization microscopy (PALM) images and can be applied to other bacterial cytoskeletal proteins.

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