What is Sodium Metavanadate?

Sodium Metavanadate

Sodium Metavanadate (NaVO3) for Catalysis and Negative Thermal Expansion (NTE) Systems, with white to faint yellow-beige or pale green powder/crystals.

Technical owner: Aurexene Materials Engineering Team · Last updated: 2026-06-18

NaVO3sodium vanadate

What It Is Not

  • Sodium Metavanadate is not ammonium metavanadate or vanadium pentoxide; it is the sodium salt NaVO3.

When Not to Use It

  • Do not use Sodium Metavanadate when sodium introduction is prohibited or when the process explicitly requires ammonium metavanadate or vanadium oxide feedstock.

Intrinsic Screening Summary

Identity screen
NaVO3; White to faint yellow-beige or pale green powder/crystals
Intrinsic feature
Sodium Metavanadate requires source-backed function review before public grade-level positioning. composition, form, processing route, and the linked application requirements.

Application Fit

Selection & Validation Framework

Decision QuestionMaterial-Level Answer
Material profile validationRequired for: Catalysis and Negative Thermal Expansion (NTE) Systems. Measure: identity; handling state; application acceptance criteria. Sample state: final host formulation or part state. Failure signals: application target is unmet; host compatibility is unresolved.

Material Identity & Specification Status

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

PropertyValue
CompositionNaVO3
CAS / identityIdentity confirmation required
MorphologyWhite to faint yellow-beige or pale green powder/crystals
StorageDry sealed container

Why It Works

StructureFunctionMechanism
NaVO3; White to faint yellow-beige or pale green powder/crystalsSodium Metavanadate requires source-backed function review before public grade-level positioning. composition, form, processing route, and the linked application requirements.

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Technical Guides

Technical GuideSummary
Redox, Acid-Base, Defect, and Surface-Reaction Mechanisms in Functional Oxide CatalystsRedox, Acid-Base, Defect, and Surface-Reaction Mechanisms in Functional Oxide Catalysts — 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.

Commercial Availability

Supplier role: Request confirmation

Supply status: Request confirmation

Sample status: Sample availability requires confirmation

Commercial details are not published until the source and verification fields are complete and the Supplier Data Packet is signed by the sales owner, technical reviewer, and resource/compliance owner. Request current grade, form, sample, packaging, and delivery confirmation.

Documents & Inquiry

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

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 Sodium Metavanadate Sample / Qualification Review