Medium-Entropy MAX Phase Powder Type 211 90% ATOMFAIR®

$182.00

Institutional Procurement & Supply Compliance: As a verified US supplier, Atomfair accepts formal institutional Purchase Orders (POs), contract billing schedules, and custom procurement loops for university and national laboratories, and corporate R&D departments globally.

Research-grade Type 211 (Ti0.25Zr0.25Nb0.25Ta0.25)2AlC MAX phase black powder, 90% purity, 1–35 μm particle size, 1 g pack for lab synthesis. Order now.

SKU: AF-NM-M-MXEN-K107-P107
Category: ,
Brands:

(Ti0.25Zr0.25Nb0.25Ta0.25)2AlC Medium-Entropy MAX Phase Ceramic Material, Type 211, 1 g
Product Type: MAX phase ceramic powder
Research-grade laboratory product
Product Overview

MAX phase ceramic powder (Ti0.25Zr0.25Nb0.25Ta0.25)2AlC Medium-Entropy MAX Phase Ceramic Material, Type 211 is supplied with purity 90%, size 1-35 um and the selected 1 g package.

The quoted package and, where applicable, concentration, solvent, or purity option are stated directly so procurement teams can confirm the exact material grade before ordering.

Performance Features
  • Material form: Black powder
  • Purity: 90%
  • Size: 1-35 um
  • Type: 211
  • Selected 1 g
Technical Specifications
Parameter Specification / Available Values
Atomfair Model AF-MAX39-1G
Material form Black powder
Size 1-35 um
Purity 90%
Type 211
Selected package 1 g
MATERIAL MATCHING: Match this MAX phase ceramic powder by composition, listed phase identity, purity or mesh data, particle size, and package 1 g.
SPECIFICATION REVIEW: Review composition, purity or mesh grade, particle-size range, and selected 1 g package before quotation.
QUOTATION DETAILS: Include the requested quantity and the full product option for (Ti0.25Zr0.25Nb0.25Ta0.25)2AlC Medium-Entropy MAX Phase Ceramic Material, Type 211, 1 g, when asking for procurement support.
LABORATORY PROCUREMENT SUPPORT
For material selection, specification confirmation and package-size quotation support, contact our technical sales team.
E-MAIL: inquiry@atomfair.com
Manufacturer: Atomfair LLC
Brand: ATOMFAIR®

What is the M-site elemental composition of the (Ti0.25Zr0.25Nb0.25Ta0.25)2AlC MAX phase powder?

The M-site contains equimolar proportions of titanium, zirconium, niobium, and tantalum, each with a nominal atomic fraction of 0.25, as explicitly stated in the product formula (Ti0.25Zr0.25Nb0.25Ta0.25)2AlC. This is a medium-entropy MAX phase ceramic material.

What is the purity and phase type of the (Ti0.25Zr0.25Nb0.25Ta0.25)2AlC MAX phase powder?

The powder is supplied at 90% purity and is classified as Type 211 MAX phase, indicating the M2AX layered ternary carbide structure. The product description confirms both the 90% purity and the 'Type 211' designation.

What is the particle size range of the (Ti0.25Zr0.25Nb0.25Ta0.25)2AlC medium-entropy MAX phase ceramic powder?

The particle size is specified as 1-35 μm, as stated in the technical specifications. This size range is suitable for standard powder processing and characterization in research applications.

This medium-entropy MAX phase powder with equimolar Ti, Zr, Nb, and Ta in the M-site offers a research-grade material for investigating high-entropy ceramic effects, but the 90% purity and broad particle size distribution impose constraints on experimental interpretation.

Positive

  • Medium-entropy multi-cation composition: The equimolar substitution of Ti, Zr, Nb, and Ta in the M-site of the MAX phase creates a medium-entropy ceramic with potential for enhanced thermal stability and tailored electronic properties.
  • Controlled particle size distribution: The 1–35 μm particle size range is suitable for conventional powder processing routes such as cold pressing and sintering.

Trade-offs

  • Moderate purity (90%): The 90% specified purity indicates the presence of approximately 10% secondary phases, which may affect the accuracy of property measurements in fundamental studies.
  • Broad particle size distribution: The particle size range of 1–35 μm spans over an order of magnitude, potentially leading to non-uniform sintering behavior and requiring additional classification for consistent results.

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).