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(Ti0.25Zr0.25Nb0.25Ta0.25)2AlC Medium-Entropy MAX Phase Ceramic Material, Type 211, 5 g
Product Type: MAX phase ceramic powder
Research-grade laboratory product
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LABORATORY PROCUREMENT SUPPORT
For material selection, specification confirmation and package-size quotation support, contact our technical sales team.
E-MAIL: inquiry@atomfair.com
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Manufacturer: Atomfair LLC
Brand: ATOMFAIR®
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What should I verify before using this 90% pure (Ti0.25Zr0.25Nb0.25Ta0.25)2AlC MAX phase powder in a property-sensitive experiment?
Atomfair supplies this research-grade material as a black powder with 90% purity and a 1–35 µm particle-size range, so it is not phase-pure or monodisperse. Before quotation, the supplier asks reviewers to confirm composition, listed phase identity, purity or mesh data, particle size, and the selected 5 g package, because these parameters determine whether the grade matches the intended study.
How is the medium-entropy composition of (Ti0.25Zr0.25Nb0.25Ta0.25)2AlC defined, and how does it relate to Type 211 MAX phases?
The formula (Ti0.25Zr0.25Nb0.25Ta0.25)2AlC has Ti, Zr, Nb, and Ta each at 0.25, combined with Al and C in a Type 211 MAX phase. The product is explicitly identified by composition, phase identity, purity, particle size, and package, so it should be matched on all of those criteria when comparing it with other MAX phases.
What package size and ordering information should I specify when requesting a quote for AF-MAX39-5G?
The selected package for AF-MAX39-5G is 5 g, with a 1–35 µm particle size, 90% purity, and black powder form. Procurement requests should include the requested quantity and the full product option—(Ti0.25Zr0.25Nb0.25Ta0.25)2AlC Medium-Entropy MAX Phase Ceramic Material, Type 211, 5 g—because the listing states that quotation details must include both quantity and the complete product option.
This (Ti0.25Zr0.25Nb0.25Ta0.25)2AlC medium-entropy MAX phase ceramic powder (Type 211) offers a multi-component composition for exploratory research on high-entropy layered carbides, but its 90% purity and wide 1–35 µm particle size distribution require careful consideration for property-sensitive studies.
Positive
- Multi-component high-entropy composition: The equimolar mixture of Ti, Zr, Nb, Ta in the M-site yields a medium-entropy MAX phase, potentially offering improved oxidation resistance or mechanical stability over binary MAX phases.
- Well-characterized 211 MAX phase structure: The 211-type MAX phase provides a layered hexagonal crystal structure with a combination of metallic and ceramic properties, suitable for research on high-temperature applications or as a precursor for MXene synthesis.
Trade-offs
- Moderate 90% purity level: The 90% purity indicates the presence of secondary phases or unreacted precursors, which may affect the accuracy of fundamental property measurements or require purification for sensitive applications.
- Wide particle size distribution (1–35 µm): The broad particle size range may lead to inconsistent packing density or reactivity, necessitating sieving or classification for experiments requiring uniform particle size.
Every advanced material, component, equipment, and instrument in our catalog is backed by rigorous testing. We maintain strict internal quality management frameworks and align with CE conformity metrics to deliver transparent, reproducible performance data via our public open-science repository.
To request raw batch performance data, submit formal vendor registration paperwork, or execute a fast-turnaround R&D manufacturing loop, contact us at inquiry@atomfair.com.
Item is dispatched under the Atomfair Shipping & Delivery Framework (Free worldwide shipping on orders over $59 USD excl. heavy equipment). Return is governed by the Atomfair Return & Refund Policy (7-day technical return window).






