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Parallel Bar Grids -Palladium

Parallel Bar Grids -Palladium

Product Details:

  • Smell Odorless
  • Solubility Insoluble in water
  • Boiling point 2963C
  • Purity >99.95%
  • Form Solid
  • Melting Point 1555C
  • Molecular Formula Pd
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Parallel Bar Grids -Palladium Product Specifications

  • 7440-05-3
  • Used as supporting grids for sample mounting
  • Metal grid
  • Laboratory research, electron microscopy, X-ray spectroscopy
  • Palladium
  • 2963C
  • ASTM or ISO for laboratory grids
  • Odorless
  • Insoluble in water
  • 1555C
  • Solid
  • High Purity
  • >99.95%
  • Palladium
  • Disc/Grid
  • Yes
  • 71102100
  • Pd
  • Store in a dry, inert atmosphere
  • Neutral
  • Transmission Electron Microscopy Grid
  • 231-115-6
  • Parallel Bar Grid
  • 106.42 g/mol
  • Elemental
  • 12.02 Gram per cubic centimeter(g/cm3)

Parallel Bar Grids -Palladium Trade Information

  • Western Europe, Australia, North America, Eastern Europe, Middle East, Central America, South America, Asia, Africa
  • All India

Product Description

Parallel Bar Grids -Palladium 

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 Microscopic Analysis

Each Palladium Parallel Bar Grid is carefully manufactured to guarantee dimensional accuracy and consistency, essential for reproducible scientific results. The high-grade palladium construction ensures structural stability without introducing magnetic artifacts, an advantage for delicate electron microscopy and X-ray spectroscopy workflow.


Exceptional Chemical and Electrochemical Stability

These grids are made from high-purity palladium, which provides outstanding corrosion resistance in challenging laboratory environments. The non-magnetic and inert qualities prevent unwanted interactions with samples or instrumentation, supporting reliable, long-term usage without degradation.


Reliable Packing and Handling

Grids are delivered in anti-static, secure boxes to minimize contamination and preserve the pristine, smooth surface finish required for sensitive laboratory procedures. This ensures the product arrives in optimal condition, ready for immediate application in research and analysis.

FAQs of Parallel Bar Grids -Palladium:


Q: How should Parallel Bar GridsPalladium be stored to maintain quality?

A: They should be kept in a dry, inert atmosphere and inside their original anti-static packaging to prevent contamination or corrosion, maintaining their smooth surface and high purity.

Q: What benefits does using palladium grids offer in electron microscopy applications?

A: Palladium grids provide excellent electrochemical stability, high corrosion resistance, non-magnetic properties, and a pure, clean surface, making them ideal for precise and interference-free imaging and analysis.

Q: When are parallel bar grids preferred over mesh grids in research labs?

A: Parallel bar grids are preferred when specific sample mounting orientations are required or for applications where uniform support and minimal grid interference with imaging are crucial, such as certain X-ray spectroscopy and transmission electron microscopy processes.

Q: Where can these grids be utilized beyond electron microscopy?

A: Aside from electron microscopy, they are also suitable for laboratory research, analytical chemistry, and X-ray spectroscopy tasks where high-purity, stable support is needed for sample preparation.

Q: What is the process for mounting samples on these grids?

A: Samples are typically deposited or affixed onto the smooth, clean grid surface. The parallel bar design helps securely hold specimens with minimal obstruction, suitable for high-resolution imaging.

Q: Are these palladium grids compatible with most electron microscopy sample holders?

A: Yes, the standard 3.05 mm diameter ensures compatibility with the majority of commercial electron microscopy sample holders and mounting systems.

Q: What is the main usage advantage of these grids in laboratory settings?

A: Their reliability, chemical inertness, and robust structural support allow for precise and uncontaminated analysis, ensuring consistent results during repeated use in demanding research environments.

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