Nickel (Ni) Wire, 99.9%-99.99% Purity (Request Current Price)

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Nickel (Ni) Wire, 99.9%-99.99% Purity (Request Current Price)

Nanostore Nickel (Ni) wire is a thin-film and materials-research source format supplied for PVD source loading, evaporation-related workflows, filament or wire studies, alloy preparation, and laboratory materials development. The wire and rod formats support cutting, weighing, fixture loading, and small-batch experimental work where material identity, purity, and clean handling are important. Pricing requires a current quote because wire and rod costs vary with purity, diameter, package size, and material market conditions.

Key Features

Source Material
Available purity options include 99.99% (4N), 99.9% (3N), 99.95% (3N5) for research workflows that require controlled source composition.

Wire and Rod Form Factor
Available diameter and rod-size options include 0.0197 in dia (0.5 mm) wire, 0.0787 in dia (2 mm) wire, 0.0118 in dia (0.3 mm) wire, 0.0394 in dia (1 mm) wire. Package options include 1 kg, 500 g, 100 g depending on selected purity and size.

Clean Handling and Storage
Store sealed in a dry environment. Handle with clean gloves or tweezers and avoid contact with oils, dust, moisture, or other contaminants before use.

Technical Specifications

Material: Nickel (Ni)
Form: Wire
Purity Options: 99.99% (4N), 99.9% (3N), 99.95% (3N5)
Available Size Options: 0.0197 in dia (0.5 mm) wire, 0.0787 in dia (2 mm) wire, 0.0118 in dia (0.3 mm) wire, 0.0394 in dia (1 mm) wire
Package Options: 1 kg, 500 g, 100 g
Category: Wires & Filaments
Typical Use: PVD source loading, wire evaporation research, filament-related studies, alloy preparation, and laboratory materials science

Material Properties and Technical Indicators

The following material-property values are provided as reference technical indicators for material selection, source loading, process planning, and thin-film deposition evaluation:

– Element symbol: Ni
– CAS number: 7440-02-0
– Density: 8.908 g·cm⁻³
– Physical state: solid
– Melting point: 1455 °C
– Boiling point: 2913 °C
– Heat of fusion: 17.48 kJ·mol⁻¹
– Heat of vaporization: 377.5 kJ·mol⁻¹
– Specific heat capacity: 26.07 J·mol⁻¹·K⁻¹
– Liquid density at melting point: 7.81 g·cm⁻³
– Crystal structure: face-centered cubic
– Magnetic order: ferromagnetic
– Thermal expansion coefficient: (25 °C) 13.4 µm·m⁻¹·K⁻¹
– Thermal conductivity: 90.9 W·m⁻¹·K⁻¹
– Electrical resistivity: (20 °C) 69.3 nΩ·m
– Young’s modulus: 200 GPa
– Shear modulus: 76 GPa
– Bulk modulus: 180 GPa
– Brinell hardness: 700 MPa
– Mohs hardness: 4.0
– Poisson’s ratio: 0.31

Quality-Control and Handling Indicators

Additional technical indicators reflected from the source product page:

– Analytical checks: ICP-MS trace-element analysis; ICP impurity/composition analysis; GDMS trace-metal analysis; carbon/sulfur impurity analysis; nitrogen/oxygen impurity analysis.
– Inspection focus: surface cleanliness measurement; micrometer dimensional inspection; appearance inspection; dimensional verification.
– Handling and storage: sealed dry storage and protective packaging; clean-glove handling to avoid oil, dust, moisture, and surface contamination; careful handling to avoid compression, impact, or chipping.

Common Applications

– nickel wire source loading for deposition workflows
– magnetic and conductive thin-film research
– nickel alloy preparation
– laboratory materials science and PVD process development
– Academic, industrial, and pilot-scale materials research

Option 1

99.9% (3N), 99.95% (3N5), 99.99% (4N)

Option 2

0.0118 in dia (0.3 mm) wire, 0.0197 in dia (0.5 mm) wire, 0.0394 in dia (1 mm) wire, 0.0787 in dia (2 mm) wire

Option 3

1 kg, 100 g, 500 g