Industrial Thin Graphene Nanoplate 1-6 nm 500 g ATOMFAIR®

$404.00

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 industrial thin graphene nanoplate powder features 1-6 nm thickness, 800-1100 S/cm conductivity, and 500 g package for trials. Order now.

SKU: AF-AM-C-ITGN-0106-500G
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Industrial Thin Graphene Nanoplate, 1-6 nm, 500 g

Product Type: Industrial Thin Graphene Nanoplate
Research-grade laboratory product

Product Overview

Industrial thin graphene nanoplate with 1-6 nm thickness and 800-1100 S/cm conductivity supports conductive carbon formulations that require thinner graphene platelets and larger package options.

The material is a black powder prepared by liquid-phase ultrasonic exfoliation and is positioned for graphene applications in electronics, thermal management, energy materials, composites, sensors, coatings and conductive printing.

Performance Features

  • 1-6 nm thickness supports thin platelet selection for graphene formulations.
  • 800-1100 S/cm conductivity supports conductive material research.
  • Low bulk and tap density values support packaging and feeding review.
  • Larger package options support scale-up formulation trials.

Technical Specifications

Parameter Specification / Available Values
Atomfair Model AF-ITGNP16-500G
Package Size 500 g
Product Family Industrial thin graphene nanoplate
Thickness 1-6 nm
Electrical conductivity 800-1100 S/cm
Bulk density 0.04-0.07 g/cm3
Tap density 0.06-0.10 g/cm3
Appearance Black powder
Preparation Liquid-phase ultrasonic exfoliation

Selection and Use Notes

  • Confirm the 500 g package size and required quantity before quotation.
MATERIAL SELECTION: Confirm material family, package size, sheet or particle dimensions, thickness, functional group or conductivity target, and required quantity before quotation.
SPECIFICATION CONFIRMATION: Review purity, monolayer rate, surface area, density, conductivity, grafting content or composition values where they apply to the selected material.
FORMULATION FIT: Confirm dispersion medium, storage requirement, processing route and downstream material system before purchase.
QUOTATION DETAILS: Include the material type, package size and key specification target when requesting quotation support.
LABORATORY PROCUREMENT SUPPORT
For material selection, package confirmation, specification review or formulation-fit discussion, contact our technical sales team.
E-MAIL: inquiry@atomfair.com
Manufacturer: Atomfair LLC
Brand: ATOMFAIR®

Manufacturer: Atomfair LLC
Brand: ATOMFAIR®

The material requires confirmation of dispersion medium, storage conditions, and processing route to ensure compatibility with the downstream material system. Low bulk and tap density values necessitate evaluation of packaging and feeding processes.

  • Dispersion Medium Confirmation: Confirm the dispersion medium to match the intended application and ensure proper mixing and stability.
  • Storage Requirement Review: Review storage requirements to prevent degradation or agglomeration of the nanoplatelets.
  • Processing Route Compatibility: Select a processing route that is compatible with the downstream material system to avoid formulation failure.
  • Low Density Handling: Evaluate low bulk and tap density to avoid feeding difficulties in automated dispensing equipment.
  • Specification Verification: Verify specification parameters such as purity, surface area, and conductivity to ensure application fit.

What electrical conductivity range does the Atomfair Industrial Thin Graphene Nanoplate AF-ITGNP16-500G offer?

The Atomfair Industrial Thin Graphene Nanoplate provides an electrical conductivity of 800-1100 S/cm, as specified in the technical data. This conductivity range is suitable for conductive carbon formulations in electronics, thermal management, energy materials, and conductive printing applications.

What is the thickness range of the Atomfair AF-ITGNP16-500G and how does it affect formulation in conductive inks?

The nanoplate has a thickness of 1-6 nm, supporting thin platelet selection for graphene formulations. This thin profile is advantageous for conductive printing and coating applications where uniform dispersion and low percolation thresholds are desired, though the exact dispersion medium and processing route should be confirmed for optimal compatibility.

What are the bulk and tap densities of the Atomfair Industrial Thin Graphene Nanoplate and what handling considerations do they imply?

The bulk density is 0.04-0.07 g/cm³ and tap density is 0.06-0.10 g/cm³. These low density values indicate that the powder is very light and may require careful feeding, packaging, and anti-dust measures during handling and scale-up formulation trials.

Industrial thin graphene nanoplate (1–6 nm thickness, 800–1100 S/cm conductivity) provides a thin platelet morphology suited for conductive formulations in electronics, thermal management, and energy materials, but requires careful handling due to low bulk density and processing considerations from liquid-phase ultrasonic exfoliation.

Positive

  • Thin platelet morphology: The 1–6 nm thickness range enables formulation flexibility for applications requiring thinner graphene platelets, such as conductive coatings, composites, and thin-film electronics.
  • High electrical conductivity: Conductivity of 800–1100 S/cm supports conductive material research and formulation of conductive inks, pastes, and electrode composites.

Trade-offs

  • Low bulk density handling: Bulk density of 0.04–0.07 g/cm³ and tap density of 0.06–0.10 g/cm³ indicate a fluffy powder that may require special feeding equipment, anti-static measures, and dust containment in processing.
  • Ultrasonic exfoliation residual: Liquid-phase ultrasonic exfoliation can introduce residual solvent or require specific dispersion protocols, impacting compatibility with certain matrix materials or demanding additional drying steps.

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).