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Indium Ingot

Indium Ingot

CAS No.: 7440-74-6

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Features

CAS No.:

7440-74-6

Linear Formula:

In

Purity:

99% - 99.99999%

Appearance:

Silvery metallic solid

Shape:

Ingot

Size:

2-3cm x 3-8cm x 6-12cm

 


 

🔹 Product Description

Indium is a soft, malleable, and ductile post-transition metal with excellent electrical and thermal conductivity. It is widely used in semiconductors, soldering alloys, transparent conductive coatings, and nuclear applications.

With high purity levels (up to 99.99999%), our Indium Ingots are ideal for advanced electronics, aerospace, and industrial applications requiring ultra-high purity materials.

 


 

🔹 Features & Properties

High Purity (99% - 99.99999%) – Ensures reliable performance in high-tech applications
Low Melting Point (156.6°C) – Ideal for soldering and bonding applications
Excellent Electrical & Thermal Conductivity – Essential for electronics and thermal management
Corrosion Resistance – Stable against oxidation and environmental degradation
High Ductility & Malleability – Can be easily shaped and processed

 


 

🔹 Applications & Related Industries

Indium Ingots are widely used in electronics, semiconductors, aerospace, and industrial coatings.

📡 Electronics & Semiconductors – Used in thin-film coatings, ITO (Indium Tin Oxide), and microchips
🔧 Soldering & Bonding – Low-melting alloys for high-performance soldering
🚀 Aerospace & Defense – Used in radiation shielding and cryogenic applications
🏭 Nuclear & Energy – Utilized in nuclear control rods and neutron detection
🔬 Optical & Coatings – Thin-film applications for displays, touchscreens, and solar panels

 


 

🔹 Synonyms & Alternative Names

Metallic Indium

Ingot Indium

High-Purity Ingot

 


 

🔹 Health & Safety Information

Handling Precautions: Use protective gloves and ensure proper ventilation.
Storage Conditions: Store in a dry, cool place away from strong acids and alkalis.
Reactivity: Stable under normal conditions but reacts with strong oxidizers.

 


 

🔹 Production Method & Equipment

Indium Ingots are produced using vacuum refining, electrolysis, and zone refining techniques to achieve ultra-high purity.

🔹 Manufacturing Process:
1️⃣ Extraction & Refining – Purification of Indium from ore concentrates
2️⃣ Electrolytic Processing – Removal of impurities for high-purity grades
3️⃣ Vacuum Distillation & Zone Refining – Further refining to achieve 99.9999%+ purity
4️⃣ Ingot Casting – Formation into standardized ingot sizes and shapes

 


 

🔹 Size & Customization

Standard Ingot Size: 2-3cm × 3-8cm × 6-12cm
Custom Sizes & Shapes available upon request

 


 

🔹 Certifications & Quality Assurance

ISO 9001 Certified Manufacturing
ICP-MS Purity Testing
XRF & SEM Particle Characterization

 


 

🔹 Lead Time & Minimum Order Quantity (MOQ)

📅 Lead Time: 2-4 weeks based on order size
📦 MOQ: Research and bulk industrial quantities available

 


 

🔹 FAQs (Frequently Asked Questions)

Q1: What is Indium used for?
✅ Indium is primarily used in electronics, semiconductors, coatings, and specialized soldering alloys.

Q2: What is the highest purity level of Indium available?
✅ We offer Indium with purities up to 99.99999% (7N) for high-tech and research applications.

Q3: Is Indium toxic?
✅ Indium is generally low in toxicity, but long-term exposure should be avoided.

Q4: Can Indium be used in solar panels?
✅ Yes, Indium Tin Oxide (ITO) is a key material for transparent conductive films in solar cells.

 


 

🔹 How to Choose the Right Indium Ingot?

For Electronics & ITO Coatings: Choose ultra-high purity (99.9999%+) Indium
For Soldering & Bonding: Opt for 99.99%+ Indium with controlled impurities
For Aerospace & Nuclear Applications: Use high-density, ultra-pure Indium

 


 

🔹 Product Standards

✔ Conforms to ASTM, JIS, and GB standards
Custom purity levels available for specialized applications

 


 

🔹 Product Specifications

Parameter Specification
Chemical Formula In
Purity 99% - 99.99999%
Melting Point 156.6°C
Appearance Silvery metallic solid
Density 7.31 g/cm³
Electrical Conductivity High

 


 

🔹 Production & Quality Control

Our Indium Ingots undergo rigorous quality testing for purity, consistency, and performance.

ICP-MS & XRF Purity Analysis
SEM & XRD Structural Analysis
Vacuum Refining & Electrolytic Purification

 


 

🔹 Shipping & Delivery Information

📦 Packaging: Secure, oxidation-resistant packaging
🚛 Delivery: Global shipping available
🌍 Worldwide Distribution

 


 

🔹 Environmental Impact & Sustainability

Recyclable & Sustainable – Indium is a critical material that can be recycled and reused
Low Carbon Refining Process – Environmentally friendly production methods

 


 

🔹 Maintenance & Care Instructions

✔ Store in sealed, dry containers to prevent oxidation
✔ Avoid contact with strong acids or oxidizers
✔ Handle with protective gloves for safety

 


 

🔹 Differentiation Between Products

Our ultra-high purity Indium Ingots are refined using advanced vacuum and electrolytic methods, ensuring exceptional quality and reliability for high-tech applications.

 


 

📩 Contact Us

For high-purity Indium Ingots, request a custom quote today!

 


Indium Ingot Impurities

Purity

99%

99.9%

99.99%

99.995%

99.999%

99.9999%

99.99999%

Impurities

Ag, Al, Cd, Fe, Mg, Ni, Pb, Si, Sn

Ag, Al, Cd, Fe, Mg, Ni, Pb, Si, Sn

Ag, Al, Cd, Fe, Mg, Ni, Pb, Si, Sn

Ag, Al, Cd, Fe, Mg, Ni, Pb, Si, Sn

Ag, Al, Cd, Fe, Mg, Ni, Pb, Si, Sn

Cd, Cu, Fe, Mg, Pb, S, Si, Sn

Ag, Cd, Cu, Fe, Mg, Ni, Pb, Zn

Chemical Identifiers

Linear Formula

In

MDL Number

MFCD00134048

EC No.

231-180-0

Beilstein/Reaxys No.

N/A

Pubchem CID

5359967

SMILES

[In]

InchI Identifier

InChI=1S/In

InchI Key

APFVFJFRJDLVQX-UHFFFAOYSA-N

Indium Ingot Properties (Theoretical)

Molecular Weight

114.82

Appearance

Silvery

Melting Point

156.6 °C

Boiling Point

2080 °C

Density

7310 kg/m3

Solubility in H2O

N/A

Electrical Resistivity

8.37 microhm-cm @ 20 °C

Electronegativity

1.7 Paulings

Heat of Fusion

0.781 Cal/gm mole

Heat of Vaporization

53.7 K-Cal/gm atom at 2080 °C

Poisson's Ratio

0.4498

Specific Heat

0.056 Cal/g/K @ 25 °C

Tensile Strength

N/A

Thermal Conductivity

0.818 W/cm/K @ 298.2 K

Thermal Expansion

(25 °C) 32.1 µm·m-1·K-1

Vickers Hardness

<10

Young's Modulus

11 GPa

 

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