Research Grade Titanium Carbide Ti3C2Tx MXene monolayer Dispersion 0.1-1.5 um (50ml;C:0.5mg/ml,Water)

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Product Information


Specification
Brand : XFNANO
BulletPoint1 : Product name:Ti3C2Tx MXene monolayer dispersion
BulletPoint2 : Status:Black Solution
BulletPoint3 : Lateral size:0.1-1.5um
BulletPoint4 : Monolayer rate:~50%
BulletPoint5 : Concentration:0.5mg/ml
BulletPoint6 : Quality Assurance: Manufactured under strict quality control standards to ensure consistent and reliable performance.
ContainsLiquidContents : 1
ExternallyAssignedProductIdentifier1 : 0810157874580
ExternallyAssignedProductIdentifier2 : 810157874580
FcShelfLife : 642.15 days
IncludedComponents : solvent
IsExpirationDatedProduct : 1
ItemName : Research Grade Titanium Carbide Ti3C2Tx MXene monolayer Dispersion 0.1-1.5 um (50ml;C:0.5mg/ml,Water)
ItemTypeKeyword : lab-chemical-standards
LiquidVolume : 250 milliliters
Manufacturer : XFNANO
ModelNumber : 50ml;C:0.5mg/ml,water
NumberOfBoxes : 1
NumberOfItems : 1
PartNumber : XFFKK411
ProductDescription : The MAX phase is A ternary layered ceramic material, where M is a transition metal element, A is mainly a third and fourth main group element, and X is carbon or nitrogen. The crystal unit arrangement of this material is hexagonal structure, and the space point group is P63/mmc, where the M atomic layer and the A atomic layer are alternately arranged to form a layered structure similar to the close-packed hexagonal structure, and the X atom is filled in the gap position of the octahedron. Where M is the pre-transition metal element, A is the main group element, X is the carbon or nitrogen element, n= 1,2,3, so it is referred to as the MAX phase. When n=1, it is 211 phases, such as Ti2AlC and Ti2SiC; When n=2, it is 312 phases, such as Ti3SiC2 and Ti3AlC2; When n=3, it is called 413 phase, such as Ti4AlN3. MAX phase synthesis is mainly prepared by mixing raw material powder by ball milling and then sintering at high temperature. A new two-dimensional nanomaterials, MXene, is A new two-dimensional carbon/nitride nanolayered material prepared by using the weak binding force between the A layer and the MX layer in the MAX phase and selecting suitable etching agents (such as HF, LiF+HCl, NH4HF2, etc.) to denudate the A atomic layer in the MAX phase. It has good electrical conductivity and hydrophicity. A variety of 2D MXene materials such as Ti3C2Tx, V4C3Tx, Nb2CTx and Ti2CTx have been synthesized successfully. The general formula can be expressed as Mn+1XnTx, where Tx represents the functional groups (-OH, -F, -O, -Cl, etc.) attached to the surface of MXene by chemical etching of the precursor MAX phase. Multilayer MXene can be stripped into single-layer MXene nanosheets by ultrasonic crushing or ball milling, whose morphology is similar to that of graphene.
ProductExpirationType : Expiration Date Required
ProductSiteLaunchDate : 2024-10-29T08:37:29.002Z
SafetyDataSheetUrl : https://www.sigmaaldrich.com/US/en/sds/aldrich/c104655?userType=undefined
Size : 250mL (8 Fl Oz)
SupplierDeclaredDgHzRegulation : not_applicable
SupplierDeclaredHasProductIdentifierExemption : 1
UnspscCode : 12000000

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