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203238

Sigma-Aldrich

Erbium(III) oxide

≥99.99% trace metals basis

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About This Item

Fórmula linear:
Er2O3
Número CAS:
Peso molecular:
382.52
Número CE:
Número MDL:
Código UNSPSC:
12352303
eCl@ss:
38161402
ID de substância PubChem:
NACRES:
NA.23

Nível de qualidade

Ensaio

≥99.99% trace metals basis

forma

powder

adequação da reação

reagent type: catalyst
core: erbium

densidade

8.64 g/mL at 25 °C (lit.)

cadeia de caracteres SMILES

O=[Er]O[Er]=O

InChI

1S/2Er.3O

chave InChI

VQCBHWLJZDBHOS-UHFFFAOYSA-N

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Descrição geral

Erbium(III) oxide (Er₂O₃) is a metal oxide with high thermal stability, optical transparency, and excellent luminescent characteristics. It is widely used in microelectronics, optoelectronics, and biomedical fields. The material is particularly valued for its role in solid-state lasers and optical amplifiers. Additionally, Er₂O₃ is utilized in the production of high-refractive index glasses for optical devices and composite electrolyte for fuel cells.

Aplicação

  • Green emission of tellurite based glass containing erbium oxide nanoparticles: This research explores the optical properties of erbium oxide nanoparticles in glass, which is important for academia chemists studying photonic materials (Noorazlan et al., 2016).
  • … shielding properties for Oxide Dispersion-Strengthened (ODS) alloys through Erbium (III) oxide, Samarium (III) oxide, and Praseodymium (III) oxide into 316L matrix: Relevant for material science, this research investigates the enhancement of shielding properties in alloys by incorporating erbium oxide (Güler et al., 2024).
  • Electrochemical synthesis and characterization of erbium oxide: This paper discusses the synthesis and potential applications of erbium oxide in various high-tech industries, relevant for both academia and industry researchers focusing on advanced material applications (Lee and Kim, 2016).

Código de classe de armazenamento

11 - Combustible Solids

Classe de risco de água (WGK)

WGK 2

Ponto de fulgor (°F)

Not applicable

Ponto de fulgor (°C)

Not applicable

Equipamento de proteção individual

dust mask type N95 (US), Eyeshields, Gloves


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The feasibility of postproduction neutron activation of an enteric-coated pancreatic enzyme preparation for in vivo gastric emptying studies has been investigated. During production of this multicomponent preparation, small amounts of 170Er-enriched erbium oxide, suitable for neutron activation, were added. Postproduction
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Ultrasound (20 kHz, 29 W·cm(-2)) is employed to form three types of erbium oxide nanoparticles in the presence of multiwalled carbon nanotubes as a template material in water. The nanoparticles are (i) erbium carboxioxide nanoparticles deposited on the external walls
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(100-x)TeO(2)-xNb(2)O(5) (x=5-20) niobic tellurite glasses doped with 0.5 mol.% Er(2)O(3) were synthesized, and their thermal, mechanical, and spectroscopic properties were measured and compared to the properties of the typical 75TeO(2)-20ZnO-5Na(2)O (TZN) tellurite glass. The refractive index (n(d)), density (rho), and

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