h-BN Nanoplates 1–5μm, <5nm Thick, 90at% ATOMFAIR®

$50.00

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 h-BN nanoplates with 1–5μm SEM diameter, <5nm AFM thickness and 90at% EDS purity, supplied as 1 g for materials R&D. Order now.

Brands:

Thin-Layer Boron Nitride Nanoplates, 1-5um (SEM), <5nm (AFM), 1 g

Product Type: Shape-controlled inorganic nanomaterial
Research-grade laboratory product

Product Overview

Thin-Layer Boron Nitride Nanoplates, 1-5um (SEM), <5nm (AFM), 1 g is a research-grade shape-controlled inorganic nanomaterial selected by measurable material attributes. Listed quotation parameters include Ingredient: h-BN; Diameter: 1-5um (SEM); Purity: 90at% (EDS); Thickness: <5nm (AFM); Package size: 1 g.

The specification table presents the order-critical material form, dimensional range, concentration, solvent, purity, appearance or package details available for this product.

Performance Features

  • Product identity: Thin-Layer Boron Nitride Nanoplates, 1-5um (SEM), <5nm (AFM), 1 g.
  • Material form: Shape-controlled inorganic nanomaterial.
  • Ingredient: h-BN.
  • Diameter: 1-5um (SEM).
  • Purity: 90at% (EDS).
  • Thickness: <5nm (AFM).
  • Package size: 1 g.

Technical Specifications

Parameter Specification / Available Values
Atomfair Model AF-BNXX-15UM-1GXX
Product Name Thin-Layer Boron Nitride Nanoplates, 1-5um (SEM), <5nm (AFM), 1 g
Product Type Shape-controlled inorganic nanomaterial
Ingredient h-BN
Diameter 1-5um (SEM)
Purity 90at% (EDS)
Thickness <5nm (AFM)
Package size 1 g
Remark NEW

Selection Notes

  • Match the material form and measurable specification to the intended laboratory preparation or material comparison workflow.
  • Confirm selected package size, concentration or dimensional range before quotation when more than one listed value is available.
MATERIAL MATCHING: Match this shape-controlled nanomaterial by size, diameter, length, thickness, purity, morphology and package size.
SPECIFICATION REVIEW: Review morphology, size range, thickness or length, purity and package size before quotation. Listed values for this item include Ingredient: h-BN; Diameter: 1-5um (SEM); Purity: 90at% (EDS); Thickness: <5nm (AFM); Package size: 1 g.
QUOTATION DETAILS: Include Atomfair model AF-BNXX-15UM-1GXX, product name, selected package size and quantity when requesting quotation support.
LABORATORY PROCUREMENT SUPPORT
For model selection, material form, dimensional range, concentration or package confirmation, contact our technical sales team.
E-MAIL: inquiry@atomfair.com
Manufacturer: Atomfair LLC
Brand: ATOMFAIR®

What is the practical impact of the 90at% purity (EDS) on defect density in thin-layer h-BN nanoplates for dielectric or thermal management studies?

The 90at% purity measured by EDS indicates that approximately 10 atomic percent of the material consists of secondary elements or contaminants, which can introduce point defects or impurity phases that may degrade the intrinsic dielectric breakdown strength and thermal conductivity of h-BN. For reliable comparative studies, researchers should account for these impurity levels in their thermal interface or gate dielectric device models.

Can these 1-5 µm diameter, <5 nm thick h-BN nanoplates be directly dispersed in polar solvents like water or isopropanol without surface modification?

Bulk h-BN is hydrophobic and tends to aggregate in polar solvents without surfactant or covalent functionalization, but the source does not specify a solvent or dispersion protocol for this product. To achieve stable suspensions for solution-based processing, researchers should verify compatibility empirically or consider using nonpolar solvents such as N-methylpyrrolidone (NMP) with mild sonication.

What storage and handling precautions are required to preserve the sub-5 nm thickness and prevent agglomeration of these boron nitride nanoplates?

The product description does not specify storage or handling conditions. However, as a research-grade shape-controlled inorganic nanomaterial with thickness below 5 nm, it is sensitive to moisture absorption and electrostatic agglomeration. Standard good laboratory practice for 2D nanomaterials includes storage in airtight, dry containers under inert gas and handling in a glovebox to prevent powder caking and thickness degradation.

Thin-layer boron nitride nanoplates with 1-5 um lateral size and sub-5 nm thickness offer a high-aspect-ratio 2D material suitable for thermal management and composite reinforcement, but the 90at% purity and research-grade designation impose constraints for high-purity or commercial applications.

Positive

  • High-aspect-ratio nanoplates: Thin-layer boron nitride nanoplates with lateral dimensions of 1-5 um and thickness <5 nm provide a high aspect ratio, beneficial for thermal interface materials, polymer composites, and barrier coatings.
  • Research-grade purity specification: Purity of 90at% (by EDS) ensures a defined composition for reproducible laboratory studies in 2D material research.

Trade-offs

  • Research-use-only limitation: This product is designated as a research-grade laboratory product and is not intended for clinical, diagnostic, or commercial applications.
  • Purity constraints for high-sensitivity work: The 90at% (EDS) purity indicates the presence of impurities that may affect performance in ultra-high-purity applications such as single-crystal growth or electronic device fabrication.

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).