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685453

Platinum

greener alternative

Greener Alternative

nanopowder, <50 nm particle size (TEM)

Synonym(s):

Platinum black, Platinum element

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Size/SKUAvailabilityPrice
100 mg

Available to ship TODAYfromMILWAUKEE

$338.00
$253.50
250 mg

Available to ship TODAYfromMILWAUKEE

$593.00
$444.75

About This Item

Linear Formula:
Pt
CAS Number:
Molecular Weight:
195.08
NACRES:
NA.23
PubChem Substance ID:
UNSPSC Code:
11101803
EC Number:
231-116-1
MDL number:

$253.50

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form

nanopowder

Quality Segment

reaction suitability

reagent type: catalyst
core: platinum

greener alternative product characteristics

Design for Energy Efficiency
Learn more about the Principles of Green Chemistry.

sustainability

Greener Alternative Product

resistivity

10.6 μΩ-cm, 20°C

particle size

<50 nm (TEM)

bp

3827 °C (lit.)

mp

1772 °C (lit.)

density

21.45 g/cm3 (lit.)

application(s)

hydrogen and fuel cell

greener alternative category

SMILES string

[Pt]

InChI

1S/Pt

InChI key

BASFCYQUMIYNBI-UHFFFAOYSA-N

General description

We are committed to bringing you Greener Alternative Products that adhere to one of the four categories of Greener Alternatives. This is an enabling product that can be integrated with titanium nanotubes to optimize energy applications, enhancing efficiency in energy storage and conversion systems. Click here for more information.
Platinum(Pt) is a dense, malleable, and ductile silver-white noble metal belonging tothe platinum group. This product is a Pd nanopowder with a particle size of <50nm (TEM), the resistivity of 10.6 μΩ-cm at 20°C and density of 21.45 g/cm³. Platinumis known for its exceptional resistance to corrosion and oxidation, making ithighly valuable in various industrial applications. Platinum exhibits strongcatalytic properties, which are utilized in a range of applications includingelectrical equipment, dental materials, implanted medical devices, andautomobile catalysts. Its high melting point of 1768 °C and stability underextreme conditions further enhance its desirability in sensitive researchprojects across electronics, catalysis, and synthesis. Our high-purity platinumpowder is characterized by its superior trace metals purity, ensuring itseffectiveness in demanding applications requiring high standards of quality andperformance.

Application


  • Main Group SnN(4)O Single Sites with Optimized Charge Distribution for Boosting the Oxygen Reduction Reaction.: This research focuses on the application of SnN(4)O single sites, enhanced by platinum, to improve the oxygen reduction reaction, a crucial process in fuel cells and metal-air batteries. The study highlights the potential of these materials in creating more efficient and durable energy storage solutions. (Shao et al., 2024).

  • Hydrogen spillover inspired bifunctional Platinum/Rhodium Oxide-Nitrogen-Doped carbon composite for enhanced hydrogen evolution and oxidation reactions in base.: This paper discusses a composite material using platinum and rhodium oxide, designed to enhance hydrogen evolution and oxidation reactions. This advancement is significant for renewable energy storage and hydrogen fuel cell technologies. (Kumar Manna et al., 2024).

  • Rapid synthesis of high-purity molybdenum carbide with controlled crystal phases.: Although primarily focused on molybdenum carbide, this study provides insights into high-purity synthesis techniques that could be applicable to platinum-based materials, potentially benefiting academic research and industrial applications. (Fang et al., 2024).

  • Solar-assisted selective separation and recovery of precious group metals from deactivated air purification catalysts.: This research explores a method for recovering platinum group metals from used catalysts using solar energy. This method could be beneficial for sustainable industrial practices and the recycling of high-value materials. (Wu et al., 2024).




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771937204013349402
description

nanopowder, <50 nm particle size (TEM)

description

nanopowder, 200 nm particle size (SEM), 99.9% (metals basis)

description

powder, 99.995% trace metals basis

description

wire, diam. 0.25 mm, 99.9% trace metals basis

form

nanopowder

form

nanopowder

form

powder

form

wire

bp

3827 °C (lit.)

bp

3827 °C (lit.)

bp

3827 °C (lit.)

bp

3827 °C (lit.)

density

21.45 g/cm3 (lit.)

density

21.45 g/cm3 (lit.)

density

21.45 g/cm3 (lit.)

density

21.45 g/cm3 (lit.)

resistivity

10.6 μΩ-cm, 20°C

resistivity

10.6 μΩ-cm, 20°C

resistivity

10.6 μΩ-cm, 20°C

resistivity

10.6 μΩ-cm, 20°C

mp

1772 °C (lit.)

mp

1772 °C (lit.)

mp

1772 °C (lit.)

mp

1772 °C (lit.)

greener alternative category

Enabling

greener alternative category

Enabling

greener alternative category

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greener alternative category

-


pictograms

Flame

signalword

Danger

hcodes

Hazard Classifications

Flam. Sol. 1

Storage Class

4.1B - Flammable solid hazardous materials

wgk

nwg

flash_point_f

Not applicable

flash_point_c

Not applicable

ppe

Eyeshields, Gloves, type P3 (EN 143) respirator cartridges



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Certificates of Analysis (COA)

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Questions

  1. What is the distribution of particle sizes? How to properly disperse the Pt particles in water?

    1 answer
    1. The exact particle size distribution is not determined for this product. The size specification for this product is "'<50 nm (TEM)" which is reported as "Conforms" on the Certificate of Analysis . For aqueous dispersion, a stabilizer such as PVP or PEI should be used. Controlled sonication with cooling is recommended, and a water–isopropanol co-solvent may be included to aid wetting. Centrifugation should be performed to remove aggregates immediately before use.

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