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Holey Carbon Films on 300 Mesh Nickel (Pack of 25)

Holey Carbon Films on 300 Mesh Nickel (Pack of 25)

Product Details:

  • Melting Point Nickel support: 1455C; Carbon film does not exhibit a sharp melting point
  • Shape Circular grid
  • Molecular Weight C: 12.01; Ni: 58.69
  • Smell Odorless
  • Molecular Formula C (Carbon film), Ni (Nickel mesh)
  • Density 2.2 Gram per cubic centimeter(g/cm3)
  • Purity Nickel mesh: 99.9%, Carbon film: ultra high purity
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Holey Carbon Films on 300 Mesh Nickel (Pack of 25) Product Specifications

  • Neutral
  • Thin film on grid
  • Transmission Electron Microscopy (TEM) grid support
  • 7440-44-0 (Carbon), 7440-02-0 (Nickel)
  • Electron Microscopy Carbon Film
  • Holey Carbon Film on Nickel Mesh
  • Insoluble in water and most solvents
  • Store in dry, dust-free conditions
  • Nickel support: 2732C; Carbon does not have a boiling point
  • TEM specimen preparation, particle support films
  • TEM grid support films
  • Electron Microscopy grid standard
  • 7017.90
  • Carbon, Nickel
  • Nickel support: 1455C; Carbon film does not exhibit a sharp melting point
  • Circular grid
  • 231-153-3 (Nickel), 231-955-3 (Carbon)
  • C: 12.01; Ni: 58.69
  • Odorless
  • C (Carbon film), Ni (Nickel mesh)
  • Grid Film
  • 2.2 Gram per cubic centimeter(g/cm3)
  • Nickel mesh: 99.9%, Carbon film: ultra high purity
  • Yes
  • Laboratory Grade

Holey Carbon Films on 300 Mesh Nickel (Pack of 25) Trade Information

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

Product Description

Holey carbon films have many uses in microscopy but for certain applications the mesh sizes of standard TEM grids are too large to support the sample. Continuous carbon films can also be a problem due to the fact that the thin film can inelastically scatter electrons and contribute to background noise. Holey carbon films therefore are a suitable alternative. Holey carbon films have holes of various sizes up to 100m. In addition to providing support, the increased image contrast in the regions of the holes compared to regions of film is also of benefit. Typical applications include biological and materials science and cryo-TEM.

Supplied as 25 or 50 grids in a grid box.

Holey carbon support films can be applied to other grid sizes, material or type. Further details available on request.



Exceptional Electron Transparency

These holey carbon films on nickel mesh ensure high electron transparency, enabling clear visualization of fine specimen details in TEM analysis. The uniform holes, ranging from micron to sub-micron size, facilitate high-resolution imaging essential for advanced material science and life science research projects.


Optimal Surface Quality and Support

Each grid features a minimally wrinkled, ultra-clean carbon film on a 300 mesh nickel support, with a nominal thickness of 15-30 nm. This configuration minimizes sample distortion and provides robust mechanical stability, making it suitable for both particle deposition and fragile specimen support applications.


Convenient and Ready-to-Use Packaging

Supplied as a pack of 25 pieces in protective vials, these grids are pre-cleaned and ready for immediate use. Their stable nature ensures longevity when stored properly, making them a reliable choice for laboratories requiring consistent, high-quality TEM grid supports.

FAQs of Holey Carbon Films on 300 Mesh Nickel (Pack of 25):


Q: How should Holey Carbon Films on 300 Mesh Nickel grids be handled during TEM specimen preparation?

A: Use clean, precision tweezers to handle the grids, and avoid applying excessive pressure to prevent damage. Always ensure a dust-free environment to maintain the surface quality and maximize imaging results.

Q: What is the main benefit of using a holey carbon film on a 300 mesh nickel grid for high-resolution TEM imaging?

A: The holey carbon structure provides high electron transparency and minimal background noise, allowing clear imaging of particles and fine details. The nickel grid offers excellent mechanical stability and ultra-high purity for reliable research outcomes.

Q: When are these grids considered ready for use, and is any pre-treatment required?

A: These grids are pre-cleaned and ready to use straight out of the vial, with no additional pre-treatment necessary, saving preparation time and reducing risk of contamination.

Q: Where are these holey carbon film grids typically employed?

A: They are commonly used in research institutions, laboratories, and academic settings in the United Kingdom and worldwide, mainly for transmission electron microscopy specimen support and nanoparticle deposition.

Q: What precautions should be taken for long-term storage of these grids?

A: Store the grids in their original protective vials in a dry, dust-free environment to maintain cleanliness and prevent degradation. Proper storage preserves their high surface quality and ensures longevity.

Q: How does the micron to sub-micron hole structure contribute to the TEM imaging process?

A: The varied hole sizes allow for diverse specimen support, enhanced electron transmission, and reduced sample background interference, making them ideal for high-resolution TEM studies requiring clear, detailed images.

Q: What advantages does the pure nickel mesh offer as a support material for these grid films?

A: Pure nickel provides mechanical strength, excellent thermal stability (melting point: 1455C), and resistivity to most solvents, ensuring compatibility with demanding laboratory environments and experimental protocols.

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