Ultrapure SWCNTs dispersion(XFS 16-1), ; 0.15 wt% content, OD 1-2 nm, model AF-CNTD-WDSR1-P1000

$222.00

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Ultrapure SWCNTs dispersion(XFS 16-1), ; 0.15 wt% content, OD 1-2 nm is a single-walled carbon nanotube material supplied with ; 0.15 wt% content, OD 1-2 nm. It is prepared for buyer comparison by model, material form, concentration or dimensional specification before quotation.

Ultrapure SWCNTs dispersion(XFS 16-1), ; 0.15 wt% content, OD 1-2 nm

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

Product Overview

Ultrapure SWCNTs dispersion(XFS 16-1), ; 0.15 wt% content, OD 1-2 nm is a single-walled carbon nanotube material supplied with ; 0.15 wt% content, OD 1-2 nm. 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: Ultrapure SWCNTs dispersion(XFS 16-1) identifies the single-walled carbon nanotube material for procurement comparison.
  • Carbon nanotube content: ; 0.15 wt% supports model matching against the required experiment or formulation workflow.
  • Composition: Ultrapure SWCNTs supports model matching against the required experiment or formulation workflow.
  • aqueous dispersion: deionized; water/IPA,non-ionicsurfactant; Carbon Nanotube Specifications supports model matching against the required experiment or formulation workflow.
  • Outerdiameter: 1-2 nm supports model matching against the required experiment or formulation workflow.
  • Length: 5-30um supports model matching against the required experiment or formulation workflow.

Technical Specifications

Parameter Specification / Available Values
Atomfair Model AF-CNTD-WDSR1-P1000
Carbon nanotube content ; 0.15 wt%
Composition Ultrapure SWCNTs
aqueous dispersion deionized; water/IPA,non-ionicsurfactant; Carbon Nanotube Specifications
Outerdiameter 1-2 nm
Length 5-30um
Purity >95%

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.
  • Confirm the selected model, quantity, package size and application requirements before quotation.
QUOTATION DETAILS: Confirm nanotube type, concentration, solvent system, dispersion form and package size before quotation.
SPECIFICATION CONFIRMATION: Carbon nanotube content, solvent, viscosity or solid-content details are reviewed for the selected dispersion or slurry.
MATERIAL SELECTION: Aqueous, NMP, oil-based, paste and slurry forms can be matched to coating, conductive additive or composite preparation workflows.
QUOTATION REQUEST: Include nanotube type, solvent, concentration, package size and target use 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®

This product is an aqueous dispersion of single-walled carbon nanotubes in water/IPA with non-ionic surfactant. The dispersion is optimized for use in coating, conductive additive, and composite preparation workflows.

  • Solvent System Compatibility: The dispersion is supplied in a deionized water/IPA solvent system with non-ionic surfactant, which may affect compatibility with other solvents or polymers.

What is the trade-off between using a low concentration (0.15 wt%) SWCNT dispersion and achieving high electrical conductivity in thin-film coatings?

The 0.15 wt% concentration is low, requiring larger volumes or multiple deposition steps to achieve percolation, but it ensures minimal aggregation and better uniformity. The purity >95% and small outer diameter (1-2 nm) with length 5-30 µm provide a high aspect ratio for efficient network formation at low loadings, though the trade-off is increased processing time and material cost.

Can this ultrapure SWCNT aqueous dispersion be directly integrated into organic solvent-based coating processes?

No, this dispersion is formulated in deionized water and isopropyl alcohol (IPA) with a non-ionic surfactant, making it optimized for aqueous or water-miscible workflows. Direct addition to non-polar organic solvents may cause phase separation or surfactant destabilization. Compatibility should be tested with the target solvent system or a solvent exchange performed before use.

What handling precautions are required for the non-ionic surfactant-stabilized SWCNT dispersion to maintain stability?

The non-ionic surfactant system in this aqueous/IPA dispersion requires avoiding strong electrolytes, extreme pH, or high shear that could disrupt the stabilized suspension. Use clean, dry equipment and store at controlled room temperature to prevent evaporation or contamination. The surfactant is selected for water-based systems, so compatibility with other solvents or additives must be verified.

This ultrapure SWCNT dispersion (XFS 16-1) at 0.15 wt% with outer diameter 1-2 nm and length 5-30 μm in a deionized water/IPA/non-ionic surfactant system offers a well-defined nanocarbon material for dispersion, composite, or electrode research, but requires careful handling due to surfactant presence and low solid content.

Positive

  • High purity SWCNT dispersion: Purity >95% with outer diameter 1-2 nm and length 5-30 μm provides well-characterized single-walled nanotubes for consistent experimental results in conductive films or composite formulations.
  • Aqueous dispersion with surfactant: Dispersion in deionized water/IPA with non-ionic surfactant enables direct use in coating or inkjet workflows without additional solvent exchange, simplifying lab integration.

Trade-offs

  • Low solid content constraint: At only 0.15 wt% carbon nanotube content, achieving sufficient nanotube loading in final composites or films may require large volumes or concentration steps, increasing processing time and cost.
  • Surfactant interference risk: The non-ionic surfactant present in the dispersion can affect surface chemistry, electrical conductivity, or interfacial bonding in sensitive applications, requiring additional purification or compatibility testing.

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).