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265829 Aldrich

Gold

foil, thickness 0.5 mm, 99.99% trace metals basis

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Properties

Related Categories Gold, High-Purity Metal Foils, Materials Science, Metal and Ceramic Science, Metals,
InChI Key   PCHJSUWPFVWCPO-UHFFFAOYSA-N
assay   99.99% trace metals basis
form   foil
resistivity   2.05 μΩ-cm, 0°C
thickness   0.5 mm
bp   2808 °C(lit.)
mp   1063 °C(lit.)
density   19.3 g/mL at 25 °C(lit.)

Description

Packaging

6 g in rigid mailer

Quantity

6 g = 25 × 25 mm

Application

Gold based neutron flux monitors may use gold foils. Au foils may be used to form a AuSn/Au joint system for opto-electronic chips. Modified gold foil electrode may be used to study heterogeneous electron transfer properties of biological electron transfer proteins.3 Electrodeposited polycrystalline palladium-nickel alloy on gold foils may be investigated for the enhanced catalytic behavior of the alloy.

General description

Gold is one of the most popular materials to be used for neutron flux monitoring mainly because it possesses a large thermal cross section for neutron capture (197Au(η, η) 198Au. Gold has the half-life of 2.7 days.Reports show that the rate of dissolution of Au is very fast in SnPb solder.

Price and Availability

Suggested Laboratory Gloves


Laboratory GlovesThis substance has been tested against several types of hand protection for CE compliance. Click below to find the recommended gloves for handling this product.




Ultra-High Purity Inorganics
Safety & Documentation

Safety Information

RIDADR 
NONH for all modes of transport
WGK Germany 
nwg

Documents

Certificate of Analysis

Certificate of Origin

Protocols & Articles

Articles

Combinatorial Materials Science for Energy Applications

Materials are the fundamental basis for solutions to the most pressing issues in energy generation, transport, and utilization, as well as more general issues in sustainability. In many cases, long-t...
Keywords: Asymmetric synthesis, Catalysis, Chemical vapor deposition, Combinatorial synthesis, Dehydrogenation, Deposition, Diffraction, Diffusion, Evaporation, Genetic, Hydration reaction, Materials Science, Microscopy, Nucleic acid annealing, Oxidations, Photovoltaics, Polymerization reactions, Reductions, Semiconductor, Substitutions, Thin film deposition, X-Ray diffraction

Peer-Reviewed Papers
15

References

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