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Special Single Hole TEM Grids -Nickel

Special Single Hole TEM Grids -Nickel

Product Details:

  • Other Names Nickel TEM Support Grid
  • Solubility Insoluble in water
  • Ph Level Neutral
  • Form Grid / Mesh
  • Melting Point 1455C
  • HS Code 71151000
  • Shape Circular Grid
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Special Single Hole TEM Grids -Nickel Product Specifications

  • TEM grid manufacturing standard
  • Laboratory / Research Grade
  • Ni
  • 99.9%
  • 8.90 Gram per cubic centimeter(g/cm3)
  • TEM Grid, Metallic
  • Store in clean, dry conditions; avoid exposure to corrosive environments
  • Nickel
  • TEM imaging, material science, nanotechnology
  • Ni
  • 7440-02-0
  • Single Hole Grid
  • Insoluble in water
  • Transmission Electron Microscopy Sample Support
  • Nickel TEM Support Grid
  • Grid / Mesh
  • 1455C
  • Neutral
  • 71151000
  • Circular Grid
  • 58.69 g/mol
  • 2913C
  • Nickel
  • Yes
  • 231-111-4
  • Odorless and tasteless

Special Single Hole TEM Grids -Nickel Trade Information

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

Product Description

Single Hole TEM Grids -Nickel

3.05mm diameter, single hole TEM grids. Hole diameters: 50um, 75um, 100um, 150um, 200um, 300um, 400um, 500um, 600um, 800um, 1000um, and 1500um. Nickel.



Exceptional Mechanical Reliability

Crafted from high-purity nickel, these TEM grids combine robust mechanical strength with excellent corrosion resistance, ensuring reliable support for delicate samples during extended imaging sessions. The non-magnetic nature prevents interference in sensitive electron microscopy operations, making them a trusted choice for research and laboratory environments.


Tailored for Precise Imaging

The single central hole design and smooth, electron-transparent support surface maximize imaging clarity. With a diameter of 3.05 mm and a central 2.0 mm opening, these grids enable detailed sample positioning and consistent results for transmission electron microscopy studies, enhancing both workflow and analytical accuracy.


Flexible Customization and Safe Packaging

To cater to diverse scientific requirements, these grids are available with special coatings and customizable sizes. They are packaged in anti-static grid boxes to shield against contamination and electrostatic damage, ensuring each grids optimal condition upon arrival and during storage.

FAQs of Special Single Hole TEM Grids -Nickel:


Q: How do I store Special Single Hole TEM Grids to maintain their quality?

A: Store these nickel TEM grids in a clean, dry environment and avoid exposure to corrosive substances. The supplied anti-static grid box helps prevent contamination and physical damage, supporting indefinite shelf life under proper storage conditions.

Q: What benefits does the single central hole design offer for TEM imaging?

A: The single central hole allows for unobstructed electron transmission and precise sample placement, improving imaging accuracy and enabling high-quality results for material science and nanotechnology applications.

Q: When should I consider custom options for TEM grids?

A: Custom coatings or sizes are recommended when standard grids do not meet specific experimental requirements, such as supporting unique materials or accommodating specialized holders in advanced microscopy protocols.

Q: Where are these TEM grids compatible for use?

A: These grids are designed to fit standard TEM holders and can be safely integrated into most transmission electron microscopy systems commonly found in research labs and university facilities.

Q: What is the process for sterilizing these TEM grids if needed?

A: Though non-sterile by default, the nickel grids can be sterilized using standard laboratory protocols, such as autoclaving or exposure to chemical sterilants, without compromising their structure or finish.

Q: How does the nickel material benefit TEM grid performance?

A: Nickel imparts superior strength, corrosion resistance, and a non-magnetic character to the grids, ensuring stable performance, electrical neutrality, and enhanced durability in high-resolution electron microscopy experiments.

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