BK2020011861
BK2020011861
BK2020011861
BK2020011861
56-12316-2
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Product Description
Detailed introduction
Product Information:
Name: Organ-shaped Ti2CTx
Size: 1-5um
Product performance: high purity and excellent electrochemical performance
Functional group: -OH-F-O-Cl (customizable)
Purity: 99%
Storage condition: Dry at room temperature
Process: HF treatment or HCl+LiF treatment
Details: organ-like material, obtained by etching with hydrofluoric acid.
Applications: energy storage, catalysis, analytical chemistry, mechanics, adsorption, biology, microelectronics, sensors, etc
The size and process can be customized
MXenes material MXenes material
Name
Product name Craft
Processing
technology specifics
Details
Ti2C organ-like
Organoid material HF treatment
HF Treatment organoid material, obtained by etching with hydrofluoric acid.
Organ-like material obtained by etching with HF.
Single/little layer powder material
Single/Layer Powder Material freezing treatment
cryogenic treatment A colloidal solution of single/layer powder material, a powder obtained by freeze-drying. Powder obtained by freeze-drying of colloidal solution of single/small layer village material.
Nb2C organ-like
Organoid material HF treatment
HF Treatment organoid material, obtained by etching with hydrofluoric acid.
Organ-like material obtained by etching with HF.
Single/little layer powder material
Single/Layer Powder Material freezing treatment
Cryogenic treatment A colloidal solution of single/layer powder material, a powder obtained by freeze-drying. Powder obtained by freeze-drying of colloidal solution of single/small layer village material.
V2C organ-like
Organoid material HF treatment
HF Treatment organoid material, obtained by etching with hydrofluoric acid.
Organ-like material obtained by etching with HF.
Single/little layer powder material
Single/Layer Powder Material freezing treatment
cryogenic treatment A colloidal solution of single/layer powder material, a powder obtained by freeze-drying. Powder obtained by freeze-drying of colloidal solution of single/small layer village material.
Ti3C2 organ-like
Organoid material HF treatment
HF Treatment organoid material, obtained by etching with hydrofluoric acid.
Organ-like material obtained by etching with HF.
Clay material
Clay materials LiF treatment
LiF Treatment Clay materials can be dispersed into single layer materials by ultrasonic centrifugation, with a yield of about 25-35%. The ultrasonic power needs to be more than 160W, and the time is about 2h to 6h.
Clay material, which can be dispersed as a single layer material by ultrasonic centrifugation, yields about 25-35%. Ultrasound power needs more than 160W, and the time is about 2 h to 6 h.
Single/few layer colloidal solution
Single/Layer Colloidal Solution 5mg/ml
100ml single/little layer village compound colloidal solution, with the Tindahl phenomenon, can be directly utilized by the MXenes material.
The colloidal solution of single/few layer village material that has Tindal phenomenon and can be used directly.
The colloidal solution of single/few layer village material that has tindal
Single/Layer Colloidal Solution 10mg/ml
100ml single/little layer village compound colloidal solution, with the Tindahl phenomenon, can be directly utilized by MXenes material.
The colloidal solution of single/few layer village material that has Tindal phenomenon and can be used directly.
Single/few layer village material that has tindal
Single/Layer Powder Material
Freeze-drying
A colloidal solution of single/low-layer ingredients, a powder obtained by freeze-drying.
Powder obtained by freeze-drying of colloidal solution of single/small layer village material.
Self-supporting membrane material
Self-supporting membrane materials vacuum filtration
Vacuum suction filtration A colloidal solution of single/small layer village material, a flexible membrane obtained by vacuum suction filtration. Flexible membranes obtained from the colloidal solution of single/small-layer village materials by vacuum filtration.
Please refer to the attachment: MXene Manual for specific characterization