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Erbium Oxide Product Manual

Views: 0     Author: Lacen Rare earth Technology Co.,Ltd     Publish Time: 2025-11-25      Origin: Lacen Rare

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Erbium Oxide Product Manual

I. Core Product Information

(1) Specifications and purity parameters

  • Core purity: The main product is supplied at 99.9% purity grade. Custom high-purity specifications can be tailored to meet customer R&D or mass production needs, fully covering quality requirements from standard industrial processing to high-end optoelectronics applications.

  • Physical form: Characteristic light pink powder. For special processes, we can customize nano-scale or other personalized forms to enhance compatibility with specific production workflows.

  • Key parameters: loose density is stable at 0.7-1.3g/cm3, true density 8.64g/cm3 (standard environment at 25℃), melting point 2407℃, boiling point 3290℃, not easy to absorb moisture in air, stable crystal form at high temperature, no risk of thermal decomposition

  • Chemical properties: Molecular formula Er2O3, molecular weight 382.52, insoluble in water, soluble in hydrochloric acid, nitric acid and other strong acids to form soluble Er salts; chemical properties stable, no radioactivity.

(2) Packaging Specifications

  • Standard packaging: The outer layer uses 25KG or 50KG cardboard drums, while the inner layer contains 5KG plastic bags. The cardboard drums are reinforced with wrapping film and ultimately supported by wooden pallets, forming standardized unit packaging.

  • Customized packaging: The outer layer can be provided in 25KG or 50KG iron drum packaging, while the inner layer offers 5KG aluminum foil bag packaging, meeting the precise dosage requirements for laboratory pilot and intermediate testing stages.

II. Diverse Application Fields

(1) Optical Communication and Laser Field: Core Gain Medium

As an indispensable core material in optical communication, it is extensively used in fiber amplifiers to achieve efficient optical signal amplification within the communication window, significantly enhancing both transmission distance and signal capacity in fiber-optic communications. This material serves as a critical support for constructing backbone links in 5G and 6G communication networks. In laser applications, it is employed as the working medium in solid-state lasers, enabling stable output of specific wavelength lasers suitable for medical lasers, industrial laser marking, and military laser ranging. Its high-purity characteristics ensure stable laser output and energy concentration, thereby reducing equipment failure rates.

(2) Ceramics and Glass: Functional modifiers

In advanced ceramic manufacturing, when used as stabilizers and toughening agents in zirconia ceramics, these additives effectively refine grain size, enhancing both flexural strength and thermal stability. This makes them ideal for demanding applications such as aerospace engine combustion chamber components, medical dental implants, and high-end mechanical bearings. In glass production, they are employed to create specialty optical glass, imparting a distinctive rose-red hue and exceptional light transmission properties, which are utilized in premium decorative glass and optical instrument lenses. Additionally, as glass decolorizers, they selectively absorb stray light from ferrous impurities, improving transparency and meeting the requirements for high-end architectural and automotive glass manufacturing.

(3)Electronics and Fluorescence: Components of Functional Materials

In electronics, it is used to manufacture erbium-doped semiconductor materials and optical fibers, enabling efficient conversion and transmission of optoelectronic signals. These applications include optoelectronic devices such as photodetectors and optical switches, driving the advancement of optoelectronic integration technology. In the field of fluorescent materials, it serves as a phosphor activator to produce red and near-infrared phosphors with long fluorescence lifetimes and high luminous efficiency, widely applied in LED lighting, biological fluorescence imaging, and security night vision systems. Additionally, in catalysis, it acts as an active component in rare earth catalysts, facilitating functional group transformations in organic synthesis reactions and reducing energy consumption.

III. Cooperation Guarantee System

(1) Quality is stable.

  • Leveraging the rare earth resource advantages of China's Baotou City in Inner Mongolia, we provide comprehensive support for your R&D and production. As a significant birthplace and core cluster of the global rare earth industry, Baotou City boasts unparalleled rare earth resource endowment, with its reserves accounting for nearly 90% of the country's proven reserves, ensuring the purity of resources and the stability of supply from the source.

  • The entire production process is conducted in a clean environment, with continuous monitoring using equipment such as laser particle size analyzers, BET specific surface area analyzers, XRD, and ICP-MS to ensure batch uniformity and stability of the product.

(2) Professional and customized technical services

  • The technical team can provide customized solutions based on customer requirements (e.g., specific particle size, crystal structure, or application scenarios), offering application testing guidance and data reporting support to help customers quickly validate the product's value.

  • Establish a 24-hour rapid response system to efficiently address customer needs. We prioritize service efficiency and customer experience, ensuring every feedback receives timely and professional attention. When you submit a inquiry via online messages, email, or any other channel, a dedicated account manager will contact you within 24 hours.

IV. Contact Information

  • Company name: Inner Mongolia Lanthanum Cerium Rare Materials Technology Co., Ltd.

  • Company Address: B1 Factory Building, High-tech Industrial Base, Alatanhan Street, Rare Earth High-tech Zone, Baotou City, Inner Mongolia Autonomous Region               Company Address: B1 Factory Building, High-tech Industrial Base, Alatanhan Street, Rare Earth High-tech Zone, Baotou City, Inner Mongolia Autonomous Region

  • Tel: 13734725059 

  • Email: lacenrare@lacenrare.com

  • For sample testing, technical discussions, or bulk purchases, please contact us via the above methods. We will respond within 24 hours and provide one-on-one dedicated service.


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  lacenrare@lacenrare.com
 Block B1 of Rare Earth High-tech Characteristic Industrial Base in Baotou City, Inner Mongolia, China

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