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Magnesium Tungsten Nanoparticles

Magnesium Tungsten Nanoparticles

Magnesium Tungsten Nanoparticles
Product No NRE-5148
CAS No. 562105-51-5
Formula  MgW4
APS <100nm  (Can be Customized)
Purity 99.9%
Color Off-White
Molecular Weight  759.7 g/mol
Density NA
Melting Point NA
Boiling Point NA

Magnesium Tungsten Nanoparticles

Introduction

Magnesium tungsten nanoparticles is an alloy composed of magnesium and tungsten, two metals that possess complementary properties. Magnesium is a lightweight, strong, and corrosion-resistant metal, while tungsten is renowned for its high melting point, hardness, and resistance to wear. When combined into  the resulting material benefits from a unique combination of these properties, with applications in several industries, including aerospace, electronics, and energy storage.

are typically produced by processes such as chemical vapor deposition (CVD), ball milling, or sol-gel methods. These processes allow the precise control of the nanoparticle size and morphology, which significantly enhances the reactivity, mechanical strength, and thermal conductivity of the material compared to bulk magnesium tungsten.

Properties

High Strength and Durability: Magnesium provides strength and low density, while tungsten offers hardness and resistance to wear, making MgW nanoparticles highly durable.

High Melting Point and Thermal Stability: Tungsten’s high melting point (approximately 3422°C) combined with magnesium’s strength ensures that  can withstand extreme temperatures, making them suitable for high-temperature applications.

Electrical and Thermal Conductivity: The combination of magnesium and tungsten offers both electrical and thermal conductivity, crucial for applications in electronics and thermal management.

Enhanced Surface Area: As nanoparticles, magnesium tungsten provides an increased surface area for enhanced reactivity and functionality in various chemical processes.

Corrosion Resistance: Magnesium’s corrosion resistance, when combined with tungsten’s high chemical stability, makes MgW nanoparticles suitable for use in harsh environmental conditions.

 

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