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Buy High Entropy Alloy Single layer TiVCrMoC3 MXene powder, size 200-1000nm, high quality, low price and fast delivery, if you have any interest, please click it to check the specification.
Brand:
SAT NANOItem NO.:
SAT-TiVCrMoC3TXSPayment:
TT, Paypal, WUProduct Origin:
ChinaColor:
silver powderShipping Port:
Shenzhen, ShanghaiLead Time:
1-5daysMin Order:
0.55gTi2NbC2Tx is formed by etching the precursor phase TiNbAlC, and currently the most commonly used preparation method is hydrofluoric acid etching. SAT NANO has developed a comprehensive etching preparation scheme based on the requirements of its self-developed precursor MAX, while ensuring the stability of the material.
Specification of High Entropy Alloy Single layer TiVCrMoC3 MXene powder:
| Product name |
High Entropy Alloy Single layer TiVCrMoC3 MXene powder |
| Color |
silver powder |
| Thickness | 200-1000nm |
| Layers | <=5layer |
|
Etching method |
HF/HCl etching +Layering agent layering |
| Purity | >=98% |
|
Conductivity (S/cm) |
500+-200 |
|
Surface functional groups |
hydroxyl (- OH); Oxygen content (=O); Fluorine atom (- F) |
Key Properties and Characteristics
|
Property |
Description |
|
Crystal structure |
M₄C₃Tₓ type (n = 3): four metal layers interleaved with carbon layers, formed by selective Al removal from the TiVCrMoAlC₃ MAX phase |
|
High-entropy effect |
Four transition metals (Ti, V, Cr, Mo) share the M sites; configurational entropy stabilises a single-phase structure, with lattice distortion, the cocktail effect and sluggish diffusion |
|
Multi-metal redox chemistry |
V, Cr and Mo offer multiple valence states, providing abundant redox-active sites — the origin of the enhanced storage and catalytic performance over mono-/double-metal MXenes |
|
Morphology (Single layer powder) |
Accordion-like stacked lamellae with accessible interlayer galleries — usable directly as intercalation hosts, adsorbents and composite fillers, and as feedstock for single-layer dispersions |
|
Surface chemistry |
Terminated with -O, -OH and -F groups after etching; terminations anchor ions and act as grafting points for composites |
| Application |
Scene |
|
Li-ion / Na-ion battery anodes |
High-entropy MXenes derived from quinary HE-MAX phases, including TiVCrMoC₃, deliver high and stable capacities as Li- and Na-ion anodes |
|
Energy storage — general |
First report of multi-principal-element M₄C₃Tₓ MXenes (TiVNbMoC₃Tₓ and TiVCrMoC₃Tₓ) with lithium-based performance evaluation; reviewed as a new paradigm for electrochemical energy storage |
|
Supercapacitors |
High-entropy MXenes such as TiVCrMoC₄Tₓ and TiVNbTaCrC₃Tz show competitive capacitances and cycling stability in alkaline and acidic electrolytes |
|
Lithium–sulfur batteries |
TiVNbMoC₃-based architectures act as efficient sulfur hosts and separator mediators for long-term cycling at practical loadings; the same high-entropy M₄C₃Tₓ family provides the design basis |
|
Electrocatalysis |
High-entropy MXenes are an emerging electrocatalyst class for sustainable energy conversion |
Other information
Storage conditions: Refrigerated storage (4 ° C) for 2 months.
Package detailes:
Packaging: the powder is filled into bottles. Each bottle is sealed inside an aluminum foil bag, wrapped with bubble wrap for protection, and then placed into an outer carton for shipment.
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