FM1 200-Mesh F2 Coordinate TEM Grids with Carbon Support Film

Price range: $292.00 through $1,625.00

SKU: FM1 Category:

TEM Copper, Gold & Nickel Grids with Carbon Support Films

TEM Copper Gold Nickel Grids with Carbon Support Films

Ultrathin Carbon Film

Ultrathin carbon film is a type of support film with an additional
very thin carbon layer deposited over a microgrid support film.
The typical thickness of this ultrathin carbon layer is 3–5 nm.

The purpose of the ultrathin carbon layer is to cover the micropores.
It is mainly designed for well-dispersed nanomaterials, especially
specimens smaller than 10 nm.

When a microgrid is used alone, very small particles may pass through
the micropores. Particles located near the edges of the holes may also
be more difficult to observe because of the thicker support area.

Ultrathin carbon film therefore provides better observation results
for these specimens. Available grid materials include copper,
nickel, molybdenum and gold.

Microgrid Carbon Support Film

Microgrid carbon film is a type of support film with micropores
formed during preparation and is therefore also referred to as
a microgrid support film.

The support film is carbon coated and typically has a thickness
of 15–20 nm. Its main purpose is to allow specimens to be positioned
near the edges of the micropores so that areas can be observed
without an underlying support film, helping improve image contrast.

Microgrid support films are commonly used for observing tubular,
rod-shaped and nanoparticle specimens and are particularly useful
for high-resolution imaging.

Carbon film thickness can be customized according to the application.
For particles smaller than 10 nm, ultrathin carbon film is recommended.

Carbon Support Film

Carbon support film is a specimen carrier used for transmission
electron microscopy (TEM). A carbon layer is deposited over
an organic Formvar film.

During TEM observation, the grid support film may accumulate
electrical charge under electron-beam irradiation, causing specimen
charging, drift, movement or support-film cracking.

Carbon coating improves the electrical conductivity of the support
film and helps provide better observation results.

This carbon-coated grid support film is commonly referred to as a
carbon support film and typically has a film thickness of 7–10 nm.

The support film is mainly composed of an organic layer with a thin
carbon coating, so background interference is generally low.
Samples are commonly dispersed in water or ethanol, and the support
film is generally resistant to corrosion.

Double-Grid Carbon Support Film

Double-grid carbon support film is designed specifically for magnetic
specimens. Magnetic samples may contaminate the electron microscope,
so carbon films are mounted on both grids and the specimen is enclosed
between them for protection.

The double-grid carbon support film is simple to use and is handled
similarly to a conventional single-grid carbon support film.
The dispersed specimen is placed on one grid and the second grid
is then attached over it.

This reduces the complicated conventional preparation procedure
for magnetic specimens and shortens specimen preparation time.
Magnetic powder samples can be prepared either by resin embedding
with ultrathin sectioning or by using a double-grid carbon support film.

Quantifoil Holey Carbon Film

Quantifoil is a perforated support film with precisely arranged holes
in different sizes and shapes. Compared with conventional holey carbon
films, it offers advantages for transmission electron microscopy (TEM)
grids and low-energy electron point-source microscopy (LEEPS).

The fixed geometric arrangement of Quantifoil holes facilitates
automated TEM operation, which is generally not possible with
conventional carbon films.

Quantifoil carbon support films have a large open-hole area and are
commonly used to reduce specimen thickness and minimize artifacts
caused by the support film.

The perforated carbon film can support ultrathin films or can be used
directly as a carrier for larger specimens such as micron-scale powders.
It is useful for electron diffraction (ED), electron energy-loss
spectroscopy (EELS), EELS imaging and dark-field imaging.

It can also be used for nanomaterial characterization, including
studies of biological macromolecular complexes freely suspended
over the holes.

Surface properties of Quantifoil grids, especially wettability,
can be adjusted according to user requirements. Like other carbon
films, untreated Quantifoil films gradually lose hydrophilicity
over time, while newly prepared carbon films generally have
better hydrophilicity.

Round-Hole Quantifoil Carbon Film

Round-hole Quantifoil carbon film is particularly suitable for
cryogenic transmission electron microscopy (Cryo-TEM), because
circular holes help form ice layers with more uniform thickness.

Hole spacing should be selected according to the required magnification
and whether the support-film pattern will appear in the final image.
If the film is included in the final image, image-quality evaluation
is easier because the film provides more acceptable isolated ice areas.

Size

200 Mesh / F1 Coordinate / Carbon Support Film / 100 PCS, 200 Mesh / F1 Coordinate / Carbon Support Film / 50 PCS, 200 Mesh / F1 Coordinate / Microgrid Carbon Film / 100 PCS, 200 Mesh / F1 Coordinate / Microgrid Carbon Film / 50 PCS, 200 Mesh / F1 Coordinate / Ultrathin Carbon Film / 100 PCS, 200 Mesh / F1 Coordinate / Ultrathin Carbon Film / 50 PCS, 200 Mesh / F2 Coordinate / Carbon Support Film / 100 PCS, 200 Mesh / F2 Coordinate / Carbon Support Film / 50 PCS, 200 Mesh / F3 Coordinate / Standard Carbon Film / 100 PCS, 200 Mesh / F3 Coordinate / Standard Carbon Film / 50 PCS

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