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Parallel bar grids - Copper

Parallel bar grids - Copper

Product Details:

  • HS Code 74199990
  • Solubility Insoluble in water
  • Form Solid, Mesh grid
  • Ph Level Neutral (7)
  • Melting Point 1085C
  • Boiling point 2562C
  • Purity >99.9%
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Parallel bar grids - Copper Product Specifications

  • 74199990
  • Insoluble in water
  • Copper
  • Copper
  • Meets electron microscopy lab standards
  • Solid, Mesh grid
  • 7440-50-8
  • Support film for microscopic grids, Electrode production
  • Parallel bar grid
  • 1085C
  • Neutral (7)
  • 2562C
  • >99.9%
  • Store in a dry, non-corrosive environment
  • Cu
  • Yes
  • Odorless
  • Non-ferrous metal
  • 231-159-6
  • Electron microscopy, Transmission electron microscopy (TEM), Cathodic protection, Electron beam studies
  • Cu
  • Round / Circular grid with parallel bar pattern
  • Metallic (not for consumption)
  • Laboratory / Research Grade
  • Cu Parallel Bar Grid, TEM Copper Grid
  • 63.55 g/mol
  • 8.96 Gram per cubic centimeter(g/cm3)
  • 3.05 mm diameter
  • Optionally coated with carbon or formvar
  • 10-25 µm
  • Smooth, Cleaned and Degreased
  • Compatible with most TEM sample holders
  • ~70 µm (microns) between parallel bars
  • Packed in inert atmosphere or plastic grid boxes
  • 50-100 (customizable)
  • Indefinite under recommended storage conditions

Parallel bar grids - Copper Trade Information

  • Telegraphic Transfer (T/T), Paypal, Cash in Advance (CID), Cheque
  • All India

Product Description

Parallel bar grids have a wide variety of uses, and are particularly suited to obtaining sequential information from ribbons of sections. Each grid has a mark in the rim to allow precise orientation in the electron microscope.

These grids are also available with a single bar through the centre of the grid, with an asymmetrical centre mark to identify the four quadrants of the grid.



Precision Engineering for Advanced Applications

With high precision parallel bar spacing and customizable mesh counts, these copper grids provide consistent support for electron microscopy samples. Their laboratory/research grade construction ensures reliability when visualizing fine structures using TEM. The smooth, cleaned, and degreased surface finish enhances sample integrity and imaging quality.


Versatility & Compatibility

Designed to meet exacting lab standards, these grids fit most TEM sample holders and offer optional carbon or formvar coatings to support diverse sample types. Their solid copper form, non-toxic nature, and durable structure make them well-suited for both microscopic analysis and electrode production across scientific and industrial environments.


Long-lasting Quality & Secure Packaging

Each grid is packed in an inert atmosphere or protective plastic grid boxes, safeguarding against corrosion and contamination. With indefinite shelf life under dry, non-corrosive storage, their purity and performance remain uncompromised over time, meeting diverse research, export, and supply needs globally.

FAQs of Parallel bar grids - Copper:


Q: How are parallel bar copper grids used in electron microscopy applications?

A: Parallel bar copper grids serve as support films for TEM samples, offering stability and high electron transparency. Their design aids in holding ultra-thin sections, facilitating clear imaging and reliable analysis of microstructures.

Q: What benefits do the smooth, cleaned, and degreased surface finish offer?

A: A smooth, cleaned, and degreased surface eliminates contaminants that may interfere with sample integrity or imaging quality, ensuring optimal electron transmission and reducing the risk of artifacts during microscopy.

Q: When should I consider choosing a coated option for these grids?

A: You should select carbon or formvar coating if your samples require enhanced film support or reduced charging during TEM studies. These coatings can improve sample preparation outcomes and stability under electron beam exposure.

Q: Where should copper parallel bar grids be stored for maximum shelf life?

A: Store the grids in a dry, non-corrosive environment such as inert-atmosphere packaging or plastic grid boxes. Under these recommended conditions, shelf life remains indefinite, preserving purity and usability.

Q: What process ensures the mesh count and thickness can be customized?

A: Mesh count and thickness are tailored during manufacturing to meet specific research or industrial requirements. This flexibility allows precise adaptation to various sample types and imaging resolutions.

Q: What applications, besides electron microscopy, are these grids suitable for?

A: In addition to TEM, these copper grids are utilized in cathodic protection, electrode production, and electron beam studies, supporting both scientific inquiry and industrial processes where structural reliability is critical.

Q: What are the safety precautions when handling parallel bar copper grids?

A: Copper grids are non-toxic; however, it is recommended to observe standard laboratory handling protocols, such as avoiding ingestion and minimizing direct skin contact, to sustain their high purity and prevent contamination.

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