What is Copper Chromite?

Copper Chromite

Copper Chromite (Copper-chromium inorganic system) for Laser Marking Pigments and LDS/MID.

Technical owner: Aurexene Materials Engineering Team · Last updated: 2026-07-26

Copper ChromiteCopper ChromiumCopper-ChromiumCopper-Chrocopper chromium additive

What It Is Not

  • Copper Chromite is not a copper-chromium metal alloy; it is a copper chromite oxide catalyst material.

When Not to Use It

  • Do not use Copper Chromite when chromium- or copper-containing catalyst chemistry is prohibited by the formulation, market, or disposal route.

Intrinsic Screening Summary

Identity screen
Copper-chromium inorganic system; Fine inorganic powder
Intrinsic feature
Copper Chromite requires source-backed function review before public grade-level positioning. depends on composition, form, processing route, and the linked application requirements.

Application Fit

Material Identity & Specification Status

Approved values for Particle size, Density, Purity, and Packaging are not published; confirm them during quotation or sample review.

PropertyValue
CompositionCopper-chromium inorganic system
CAS / identity12053-18-8
MorphologyFine inorganic powder
StorageDry sealed container

Why It Works

StructureFunctionMechanism
Cu2Cr2O5; Black powder; APSCopper Chromite requires source-backed function review before public grade-level positioning. depends on composition, form, processing route, and the linked application requirements.

Compare Material Routes

Technical Guides

Technical GuideSummary
Active Phase, Precursor, Promoter, and Support: Separating Material Roles in Catalyst DesignActive Phase, Precursor, Promoter, and Support: Separating Material Roles in Catalyst Design — a method-conditioned engineering guide for Catalysis covering structure-function behavior at the material, interface, and finished-system boundary, process limits, validation, and qualification boundaries.
Blistering, Delamination, Over-Etching, Carbonization, and Polymer DamageBlistering, Delamination, Over-Etching, Carbonization, and Polymer Damage — a method-conditioned engineering guide for LDS/MID covering structure-function behavior at the material, interface, and finished-system boundary, process limits, validation, and qualification boundaries.
Calcination, Reduction, Oxidation, and Atmosphere Control During Catalyst ActivationCalcination, Reduction, Oxidation, and Atmosphere Control During Catalyst Activation — a method-conditioned engineering guide for Catalysis covering structure-function behavior at the material, interface, and finished-system boundary, process limits, validation, and qualification boundaries.
Choosing a Measurement Method Based on the Engineering Decision It Must SupportChoosing a Measurement Method Based on the Engineering Decision It Must Support — a method-conditioned engineering guide for Catalysis covering structure-function behavior at the material, interface, and finished-system boundary, process limits, validation, and qualification boundaries.
Cleaning, Conditioning, Electroless Copper Deposition, and Subsequent PlatingCleaning, Conditioning, Electroless Copper Deposition, and Subsequent Plating — a method-conditioned engineering guide for LDS/MID covering structure-function behavior at the material, interface, and finished-system boundary, process limits, validation, and qualification boundaries.

Documents & Inquiry

Document access follows the current approval state. Unapproved or unavailable files route to a document request instead of a public download.

Technical Data Sheet

Approved public file

View TDS

Grade, Sample & Qualification Support

The Aurexene Materials Engineering Team can review the required form, host system, formulation or process, target, sample quantity, volume and timeline, and the grade-specific evidence needed before qualification.

Review Lab Capabilities for sample evaluation and qualification support, or Production Capabilities for scale-up, quality, documentation, and supply support.

Request Copper Chromite Sample / Qualification Review