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MXene Phase Powder-21 Series

HM2866

New product

MXene Phase Powder-21 Series includes a range of advanced two-dimensional materials like Ti2CTx, V2CTx, Nb2CTx, and Mo2CTx MXene powders, available in both monolayer and multilayer forms. Heeger Materials provides high-quality MXene Phase Powder-21 Series, offering customized solutions and competitive prices.

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Data sheet

Particle Size2–20 µm, 200–1000 nm
MaterialsTi2CTx, V2CTx, Nb2CTx, Mo2CTx

More info

MXene Phase Powder-21 Series consists of a range of cutting-edge two-dimensional materials, including Ti2CTx, V2CTx, Nb2CTx, and Mo2CTx MXene powders. These materials are synthesized by selectively etching the A atomic layer from MAX phase precursors, resulting in layered carbon/nitride-based materials with outstanding electrical conductivity, hydrophilicity, and large surface area. We offer both monolayer and multilayer forms of these powders, allowing for tailored applications in energy storage devices like supercapacitors and batteries, flexible sensors, electromagnetic shielding, and advanced coatings. Ti2CTx MXene Powder, V2CTx MXene Powder, Nb2CTx MXene Powder, and Mo2CTx MXene Powder are versatile materials used in various industrial sectors, including electronics, aerospace, and environmental protection. Heeger Materials ensures high-quality MXene Phase Powder-21 Series, meeting the diverse needs of modern technology and industrial applications.
Ti2CTx MXene Powder   V2CTx MXene Powder 

  Ti2CTx MXene Powder       V2CTx MXene Powder

MXene Phase Powder-21 Series Product List

Ti2CTx MXene Powder Specifications   

Parameter

Multilayer Ti2CTx Powder

Single-Layer Ti2CTx Powder

Size

2–20(µm)

200–1000(nm)

Number of Layers

Multilayer

≤5 Layers

Conductivity (S/cm)

10–100

2000 ± 500

Surface Groups

-OH, =O, -F, -Cl

Etching Process

LiF/HCl Etching

Appearance

Green powdered material

Structure

Two-dimensional layered material

Production Method

Lithium fluoride/hydrochloric acid system reaction

Conductivity

High conductivity with multiple vanadium oxidation states, demonstrating excellent energy storage performance

Storage

Stored in vacuum drying or inert environments

Appearance

Green powdered material

V2CTx MXene Powder Specifications

Attribute

Multilayer V2CTx Powder

Single-Layer V2CTx Powder

Etching Process

HF Etching

HF + Intercalating Agent Delamination

Size (µm)

2–20 (µm)

200–1000 (nm)

Number of Layers

Multilayer

≤5 Layers

Conductivity (S/cm)

10–100

1500 ± 500

Surface Groups

-OH, =O, -F, -Cl

Appearance

Brown powdered material

Structure

Two-dimensional layered material

Production Method

Prepared using hydrofluoric acid/intercalation reaction/lithium substitution, with excellent oxidation resistance

Conductivity

High conductivity with multiple vanadium oxidation states, demonstrating excellent energy storage performance

Storage

Stored in vacuum drying or inert environments

Nb2CTx MXene Powder Specifications

Attribute

Multilayer Nb2CTx Powder

Single-Layer Nb2CTx Powder

Etching Process

HF Etching

HF + Intercalating Agent Delamination

Size

2–20 (µm)

200–1000 (nm)

Number of Layers

Multilayer

≤5 Layers

Conductivity (S/cm)

1–10

10–100

Surface Groups

-OH, =O, -F

Appearance

Brown powdered material

Structure

Two-dimensional layered material

Production Method

Prepared using hydrofluoric acid/intercalation reaction/lithium substitution, with excellent oxidation resistance

Performance

Niobium compounds show outstanding performance in high-voltage zinc-ion batteries

Storage

Stored in vacuum drying or inert environments

Mo2CTx MXene Powder Specifications

Attribute

Multilayer Mo2CTx Powder

Single-Layer Mo2CTx Powder

Etching Process

HF Etching

HF + Intercalating Agent Delamination

Size

2–20 (µm)

200–1000 (nm)

Number of Layers

Multilayer

≤5 Layers

Conductivity (S/cm)

10–100

1000 ± 500

Surface Groups

-OH, =O, -F

Appearance

Silver-black powdered material

Structure

Two-dimensional layered material

Production Method

Prepared using hydrofluoric acid/intercalation reaction

Performance

Remarkable performance in battery energy storage and supercapacitor applications

Storage

Stored in vacuum drying or inert environments

MXene Phase Powder-21 Series SEM

Single-Layer Nb2CTx Powder SEM

              Single-Layer Nb2CTx Powder

MXene Phase Powder-21 Series Applications

  • Energy Storage Devices: Used in supercapacitors, lithium-ion batteries, and other energy storage systems due to their high conductivity and large surface area, which enhance charge/discharge efficiency.
  • Flexible Electronics and Sensors: Applied in flexible, wearable electronics and sensors for their excellent electrical conductivity and mechanical flexibility.
  • Electromagnetic Shielding: Utilized in coatings and materials for electromagnetic interference (EMI) shielding, providing effective protection in electronic devices.
  • Catalysis: Used as a catalyst or catalyst support in chemical reactions, particularly in energy conversion and environmental applications such as fuel cells.
  • Advanced Coatings: Employed in high-performance coatings for aerospace, automotive, and industrial components, improving wear resistance, corrosion protection, and durability under extreme conditions.

MXene Phase Powder-21 Series Packing And Shipping

MXene Phase Powder-21 Series should be stored in a sealed container in a dry and cool place and unexposed to air for an extended time. HM offers vacuum-sealed packaging, including 100g/bag, 500g/bag, 1kg/bag, and 25kg/drum or customized packaging as per specific requirements.

MXene Phase Powder-21 Series Packing

Where to Buy MXene Phase Powder-21 Series in Bulk?

Heeger Materials Inc., a professional supplier and manufacturer of high-quality Powder products including MXene Phase Powder-21 Series, leverages extensive expertise in supply and export to offer competitive prices. We provide customized solutions to meet specific requirements, ensuring exceptional quality and customer satisfaction.

Heeger Materials Inc. was established in 2016 in Colorado, USA. We specialize in premium-grade metals, alloys, ceramics, powders, and other materials catering to research, development, and large-scale industrial production in scientific and industrial sectors. 

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