Iridium
ALDRICH/449229 - evaporation slug, diam. × L 0.6 cm × 1.2 cm, 99.9% trace metals basis
Synonym: Iridium black
CAS Number: 7439-88-5
Empirical Formula (Hill Notation): Ir
Molecular Weight: 192.22
MDL Number: MFCD00011062
Linear Formula: Ir
Product Type: Chemical
assay | 99.9% trace metals basis |
bp | 4130 °C (lit.) |
density | 22.65 g/cm3 (lit.) |
diam. × L | 0.6 cm × 1.2 cm |
form | evaporation slug |
InChI | 1S/Ir |
InChI key | GKOZUEZYRPOHIO-UHFFFAOYSA |
mp | 2450 °C (lit.) |
resistivity | 4.71 μΩ-cm |
SMILES string | [Ir] |
weight | ~7.6 g (one slug) |
Application: | • Single Atom Iridium Decorated Nickel Alloys Supported on Segregated MoO(2) for Alkaline Water Electrolysis.: The study presents an innovative approach to enhance alkaline water electrolysis using single-atom iridium catalysts, resulting in improved efficiency and stability of the process (Wang et al., 2024 ). • An Aqueous Redox Flow Battery Using CO(2) as an Active Material with a Homogeneous Ir Catalyst.: This paper explores the use of iridium catalysts in an aqueous redox flow battery, utilizing CO2 as an active material to improve energy storage capabilities (Kanega et al., 2023 ). • Kinetic Acceleration of Lithium Polysulfide Conversion via a Copper-Iridium Alloying Catalytic Strategy in Li-S Batteries.: This research highlights the use of copper-iridium alloys to accelerate the conversion of lithium polysulfides, significantly enhancing the performance of lithium-sulfur batteries (Zhai et al., 2022 ). • Introducing High-Valence Iridium Single Atoms into Bimetal Phosphides toward High-Efficiency Oxygen Evolution and Overall Water Splitting.: The study demonstrates the integration of high-valence iridium single atoms into bimetal phosphides, leading to highly efficient oxygen evolution and water splitting processes (Yang et al., 2023 ). |
Packaging: | 7.6 g in poly bottle |
RIDADR | NONH for all modes of transport |
WGK Germany | nwg |
Flash Point(F) | Not applicable |
Flash Point(C) | Not applicable |
Purity | 99.9% trace metals basis |
bp | 4130 °C (lit.) |
mp | 2450 °C (lit.) |
Density | 22.65 g/cm3 (lit.) |
UNSPSC | 12141720 |