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Key Documents

TEM-LC300CU100

Sigma-Aldrich

Lacey Carbon Supported Copper Grids

size 300 mesh, size 100 nm , hole size, box of 25 ×

Synonym(s):

Lacey/ Carbon Film - Cu, 300 mesh 100 micron, 25pk

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100 μL
CN¥5,454.72

CN¥5,454.72


Estimated to ship onMay 19, 2025Details

A recombinant, preservative-free antibody is available for your target. Try ZRB1151

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100 μL
CN¥5,454.72

About This Item

UNSPSC Code:
41111761
NACRES:
MA.24

CN¥5,454.72


Estimated to ship onMay 19, 2025Details

A recombinant, preservative-free antibody is available for your target. Try ZRB1151

Request a Bulk Order

packaging

box of 25 ×

size

100 nm , hole size
300 mesh

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Show Differences

1 of 4

This Item
179191589572C100307
环己烷 anhydrous, 99.5%

227048

环己烷

环己烷 ACS reagent, ≥99%

179191

环己烷

环己烷 99.5%, anhydrous

589572

环己烷

assay

99.5%

assay

≥99%

assay

99.5%

assay

≥99.8%

Quality Level

200

Quality Level

200

Quality Level

200

Quality Level

100

grade

anhydrous

grade

ACS reagent

grade

anhydrous

grade

Laboratory Reagent

form

liquid

form

liquid

form

-

form

liquid

autoignition temp.

500 °F

autoignition temp.

500 °F

autoignition temp.

500 °F

autoignition temp.

500 °F

impurities

<0.001% water, <0.005% water (100 mL pkg)

impurities

H2SO4, passes test (darkened), ≤0.02% water

impurities

-

impurities

-

General description

Lacey carbon film supported TEM grids. This carbon coating consists of woven-mesh-like openings of different sizes and shapes. This type of pattern provides support but does not interfere when observing specimen sections.

Application

  • Investigation of Carbon Support on Ruthenium/Catalysts: This study explores the impact of carbon support properties on the efficiency of ruthenium/carbon catalysts for hydrogenation processes, using lacey carbon films on copper grids for catalyst characterization (Jones et al., 2016).
  • Nitrogen Doping of Carbon Supports for Hydrogen Production: Analyzes the effects of nitrogen-doped carbon supports for nickel catalysts in hydrogen production from formic acid, with characterizations performed on lacey carbon supported copper grids (Nishchakova et al., 2019).
  • Removal of Uranium on Carbon-Supported Iron Particles: Discusses the use of carbon-supported nanoscale zero-valent iron particles for uranium removal, where samples were mounted on lacey carbon supported copper grids for analysis (Crane & Scott, 2014).
  • Redispersion of Carbon-Supported Metal Catalysts: Focuses on the redispersion strategies for high-loading metal catalysts on carbon supports, tested using lacey carbon supported copper grids for catalyst characterization (Giulimondi et al., 2022).

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