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Nanotechnology

field of applied science whose theme is the control of matter on atomic and (supra)molecular scale

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General referenceInterpretive dossier study · Crown Archives visual atlas
Record originEnglish Wikipedia
Text licenseCC BY-SA 4.0
Source revisionSep 22, 2026
Entity authorityQ11468
Source-derived summary

Nanotechnology is the manipulation of matter with at least one dimension size measuring between 1 to 100 nanometers (nm). At this scale, commonly known as the nanoscale, surface area and quantum mechanical effects become important in describing the properties of matter. This definition of nanotechnology includes all types of research and technologies that deal with these distinctive properties. The plural form “nanotechnologies” is also commonly used, as is the term “nanoscale technologies,” to refer to research and applications whose defining characteristic is their scale. An earlier understanding of nanotechnology referred to the particular technological goal of precisely manipulating atoms and molecules for the fabrication of macroscale products, now referred to as molecular nanotechnology.

A near-synonym of "nanotechnology" is nanoscience (i.e., nanophysics, nanochemistry, nanobiology and nanoinformatics); however, the term "nanoscience" emphasizes the pure science aspects of the field, whilst nanotechnology along with its specific methods and processes (e.g., nanolithography and nanobiosensing) are the concrete output of applied nanosciences (e.g., nanoengineering and nanomedicine).

Nanotechnology defined by scale includes fields of science such as surface science, organic chemistry, molecular biology, semiconductor physics, energy storage, engineering, microfabrication, and molecular engineering. The associated research and applications range from extensions of conventional device physics to molecular self-assembly, from developing new materials with dimensions on the nanoscale to direct control of matter on the atomic scale.

Nanotechnology may be able to create new materials and devices with diverse applications, including nanomedicine, nanoelectronics, agricultural sectors, biomaterials energy production, and consumer products. However, nanotechnology also raises concerns about the toxicity and environmental impact of nanomaterials, and their potential effects on global economics, as well as various doomsday scenarios.

Editorial summary

“Nanotechnology” enters the record as field of applied science whose theme is the control of matter on atomic and (supra)molecular scale. Crown Archives preserves that source wording while asking what Nanotechnology, field and applied can confirm, complicate or overturn.

Editorial reviewA practical starting point whose main value is the path it opens into stronger specialist and primary sources. The current 269-word lead offers orientation but no explicit four-digit date, so chronology should not be assumed. The selected authority fields contribute no independent date. Its strongest next move is a source search built around Nanotechnology, field and applied.
Editorial analysis

Why this record matters

“Nanotechnology” is worth following because a concise public description often conceals a longer documentary argument. Here, Nanotechnology, field and applied provides the most credible route into that argument.

Evidence profile

The citation trail is more important than the brevity of the summary: it shows where individual claims can be examined in context. The source revision retrieved here is dated Sep 22, 2026. The linked authority identifier is Q11468. The Library of Congress control number is sh91001490. None of the 1 selected statements returned an explicit reference.

Critical limits

A concise general-reference account can conceal disagreements about scope, terminology or the weight assigned to individual sources. The source lead contains qualifying language; that uncertainty should survive quotation, summary and reuse. Authority statements aid reconciliation but still require their own references, qualifiers and ranks to be checked.

How to read it

Use the entry as an orientation point, then follow its citations and revision history. Names, dates and institutional relationships should be checked against the original record.

Best used for
  • Subject orientation
  • Search vocabulary
  • Locating named sources
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The closest primary source, responsible institution and strongest cited specialist reference.

Three-step research path

  1. Establish the record: confirm the title “Nanotechnology”, its source revision and the description used here.
  2. Expand the search: follow Nanotechnology primary sources, Nanotechnology archive and Nanotechnology research across catalogues and specialist indexes.
  3. Test the account: compare the strongest cited source with the responsible institution’s current record and note any disagreement.

Questions for further research

  1. Which source most directly establishes the central claim about “Nanotechnology”?
  2. Which cited source is closest to the event, object or claim?
  3. Which institution is responsible for the underlying evidence?
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Source & attribution

This entry incorporates text from Nanotechnology” on English Wikipedia. Contributors are listed in the page history. Text is available under the Creative Commons Attribution-ShareAlike 4.0 License. Selected authority identifiers and statements are retrieved from Wikidata under CC0; their references and qualifiers remain part of the verification path.