Graphitized Hydroxylate Multi-walled Carbon Nanotubes, OD >50 nm,, length <10um, purity >99.9%

$10.00

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.

Graphitized Hydroxylate Multi-walled Carbon Nanotubes, OD >50 nm,, length 99.9% is a multi-walled carbon nanotube material supplied with OD >50 nm,, length 99.9%. It is prepared for buyer comparison by model, material form, concentration or dimensional specification before quotation.

Graphitized Hydroxylate Multi-walled Carbon Nanotubes, OD >50 nm,, length <10um, purity >99.9%

Product Type: Multi-walled carbon nanotube material
Research-grade laboratory product

Product Overview

Graphitized Hydroxylate Multi-walled Carbon Nanotubes, OD >50 nm,, length <10um, purity >99.9% is a multi-walled carbon nanotube material supplied with OD >50 nm,, length <10um, purity >99.9%. It is prepared for buyer comparison by model, material form, concentration or dimensional specification before quotation.

The specification table gives the measurable selection details available for this item, including material form, dimensional range, purity, content, conductivity, solvent or composition when supplied for the selected model.

Use this page to compare nanocarbon specifications before requesting a quotation, especially where functional group, concentration, geometry, package form or availability affects laboratory procurement.

Performance Features

  • Material form: Graphitized Hydroxylate Multi-walled Carbon Nanotubes identifies the multi-walled carbon nanotube material for procurement comparison.
  • Outer Diameter: >50 nm, supports model matching against the required experiment or formulation workflow.
  • Length: <10um supports model matching against the required experiment or formulation workflow.
  • Purity: >99.9% supports model matching against the required experiment or formulation workflow.
  • -OH: 0.36 wt% supports model matching against the required experiment or formulation workflow.
  • Ordering note: Bulk quantity requirements should be confirmed when requesting quotation support.

Technical Specifications

Parameter Specification / Available Values
Atomfair Model AF-MWCNT-M50
Outer Diameter >50 nm,
Length <10um
Purity >99.9%
-OH 0.36 wt%
Procurement Note Bulk quantity requirements should be confirmed when requesting quotation support.

Selection and Use Notes

  • Match the material form and dimensional or concentration specification to the intended dispersion, composite, film, electrode, conductivity or nanocarbon research workflow.
  • Bulk quantity requirements should be confirmed when requesting quotation support.
QUOTATION DETAILS: Confirm nanotube wall type, outer diameter, length, purity, functional group and package size before quotation.
SPECIFICATION CONFIRMATION: Diameter, length, purity, surface area, functionalization and availability notes are reviewed for the selected CNT powder.
MATERIAL SELECTION: Pristine, hydroxylated, carboxylated, amino-modified, graphitized, doped and coated grades can be matched to dispersion, electrode, composite or conductivity workflows.
QUOTATION REQUEST: Include nanotube wall type, functionalization, diameter/length range, package size and quantity when requesting quotation support.
LABORATORY PROCUREMENT SUPPORT
For model selection, material specification matching, application fit or quotation confirmation, contact our technical sales team.
E-MAIL: inquiry@atomfair.com
Supplier: Atomfair
Brand: ATOMFAIR®

Manufacturer: Atomfair LLC

Brand: ATOMFAIR®

How does the low hydroxyl content of 0.36 wt% in these graphitized multi-walled carbon nanotubes affect the balance between dispersion in polar media and retention of electrical conductivity?

The -OH content of 0.36 wt% provides a low level of functionalization that introduces polar groups for dispersibility without heavily disrupting the graphitic structure, which is specified as graphitized. This combination supports retention of high electrical conductivity while enabling some compatibility with polar solvents. The exact trade-off for a given application should be confirmed experimentally, as the source identifies the material as suitable for electrode and conductivity workflows.

What solvents or polymer matrices are these graphitized hydroxylate multi-walled carbon nanotubes compatible with, given the 0.36 wt% -OH functionalization and outer diameter >50 nm?

The product description does not specify direct solvent or polymer compatibility, but the hydroxyl groups (0.36 wt%) suggest potential dispersibility in polar solvents such as water, alcohols, or DMF. The large outer diameter (>50 nm) and length (<10 um) may require optimized dispersion protocols. The source recommends contacting technical sales for application fit and confirms that the material can be matched to dispersion, composite, or electrode workflows.

What specification parameters must be confirmed with the supplier before ordering these graphitized hydroxylate multi-walled carbon nanotubes to ensure they meet experimental requirements?

The source explicitly states that before quotation, the buyer must confirm nanotube wall type, outer diameter, length, purity, functional group, and package size. These parameters ensure the material matches the intended dispersion, composite, film, electrode, or conductivity workflow. Bulk quantity requirements should also be confirmed when requesting quotation support.

This graphitized hydroxylate multi-walled carbon nanotube material (OD >50 nm, length <10 µm, purity >99.9%, -OH 0.36 wt%) is evaluated for its high purity and controlled functionalization, which support consistent dispersion and surface chemistry in composite, electrode, or conductivity research workflows.

Positive

  • High purity and controlled functionalization: Purity >99.9% with a specified -OH content of 0.36 wt% provides reproducible surface chemistry for dispersion and composite integration, reducing batch variability in sensitive electrode or film formulations.
  • Graphitized structure for enhanced conductivity: The graphitized treatment improves electrical and thermal conductivity relative to non-graphitized MWCNTs, benefiting applications requiring efficient charge transport in conductive composites or battery electrodes.

Trade-offs

  • Short length limits percolation in thick films: Length <10 µm may reduce effective percolation network formation in high-thickness or high-loading composite systems compared to longer MWCNT grades, requiring optimization of dispersion and loading.
  • Bulk quantity confirmation required before ordering: Procurement note indicates that bulk quantity requirements must be confirmed with the supplier, introducing a lead-time step for large-scale or continuous laboratory workflows.

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).