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Cu5N

Purity 99.999% · CAS 7440-50-8 · Cu

Copper Powder 99.999% (5N) — high-purity grade

Sputtering targets, electroplating chemistry

Overview

Electrolytically refined copper, re-melted and atomised under argon. Five-nines material is where the specification stops being mechanical and becomes electrical: resistivity, electromigration and diffusion behaviour all depend on the last few ppm.

Typical trace impurities

ImpurityTypical max
O (oxygen)≤ 400 ppm
Fe≤ 3 ppm
Ag≤ 3 ppm
Ni≤ 2 ppm

Indicative values. The certificate of analysis for your lot is the binding document.

Where this grade is used

  • Sputtering target and PVD feedstock producers
  • High-purity plating bath chemistry
  • Research laboratories and reference standards
  • Superconductor and cryogenic component work

Common forms

Spherical, nanopowder, granules

Specification at a glance

MaterialCopper Powder (Cu)
Purity99.999% (5N), metals basis
CAS7440-50-8
Production routeElectrolytic refining followed by inert-gas atomisation and zone-refined feedstock control
Available formsSpherical, nanopowder, granules
Analysis methodGDMS (glow-discharge mass spectrometry) full trace scan
DocumentationCertificate of analysis per lot, RoHS and REACH statements, country of origin, full GDMS scan and conflict-minerals declaration on request
Typical packaging50 g argon-sealed jar · 500 g · 5 kg · Bulk drums

What 99.999% (5N) actually means

5N is shorthand for 99.999% purity on a metals basis: at most 0.001% of the material, by weight, is something other than Cu. The metals-basis convention excludes dissolved gases and, for powders, surface oxygen — which is why oxygen is quoted separately in the trace table below.

Two lots at the same nominal purity are not interchangeable if the residual elements differ. For this grade the limiting element is typically O (oxygen) at ≤ 400 ppm. What matters is which impurities your process is sensitive to — judge a lot on its full trace analysis, not on the headline number.

Choosing 5N versus the neighbouring grades

Coming from 99.99% (4N): the step up buys you tighter trace control for sputtering targets, electroplating chemistry. If your process tolerates the residuals of 4N, the lower grade remains the more economical and more widely available choice.

Going up to 99.9999% (6N) is worth it when semiconductor interconnect, ultra-high purity pvd describes your application; expect a materially higher cost per kilo and scarcer availability for a difference few processes can detect otherwise.

When in doubt, qualify both adjacent grades on a sample and run your own incoming inspection before committing a process to either.

Quality control and traceability

Copper Powder at 99.999% is normally released against a lot-specific certificate of analysis stating the assay, the trace elements measured and the method used (GDMS (glow-discharge mass spectrometry) full trace scan). Well-run lots stay traceable from the refinery batch through to the container that reaches the laboratory.

  • A retained sample per lot, so a later question can be re-tested against the original material
  • Independent third-party verification, used when the assay is contractually critical
  • Incoming inspection on the receiving side — the certificate states the method, not the result you will measure

Handling, storage and shipping

  • Fine copper powder oxidises at the surface; keep containers sealed and open them under inert gas or dry air for grades from 5N upward.
  • Sub-45 µm cuts are classified as a combustible dust — ground equipment, avoid dust clouds and follow ATEX or NFPA 484 practice on site.
  • Store between 5 °C and 30 °C at low humidity, away from ammonia, acids and sulphur compounds.

Frequently asked questions

Common questions from buyers specifying copper powder at 99.999%.

Is 99.999% copper powder the right grade for my application?
It is the usual choice for sputtering targets, electroplating chemistry. Below it, 99.99% (4N) covers less demanding work at lower cost. Above it, 99.9999% (6N) is reserved for semiconductor interconnect, ultra-high purity pvd.
What does the 5N designation mean?
The N notation counts the nines in the assay: 5N equals 99.999% Cu on a metals basis, with the balance made up of the trace elements listed in the analysis table.
Which impurities are measured and reported?
GDMS (glow-discharge mass spectrometry) full trace scan is used, and a certificate of analysis reports each element in the table above, starting with O (oxygen) at ≤ 400 ppm. The scope of a scan can be widened to further elements when a process is sensitive to one in particular.
How is this grade normally packed?
50 g argon-sealed jar, 500 g, 5 kg, Bulk drums. Sub-45 µm cuts are classified as a combustible dust — ground equipment, avoid dust clouds and follow ATEX or NFPA 484 practice on site.
Which forms is 99.999% copper powder available in?
Commonly: spherical, nanopowder, granules. The form is often a bigger practical constraint than the assay itself, because the last processing step has to preserve the purity already achieved.