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S in-situ doped Ti3AlC2 MAX
This is an in situ sulfur doping strategy that functionalizes MXene nanosheets by introducing heteroatomic sulfur from the MAX precursor into the MXene structure. Three-dimensional folded MXene nanostructures with high specific surface areas were prepared by vacuum freeze-drying. Uses: Energy storage, catalysis, analytical chemistry, mechanics, adsorption, biology, microelectronics, sensors, etc. Group: Mxenes materials. CAS No. 196506-01-1. 0.99.
S in-situ doped Ti3C2 MXene
Organ-like material, obtained by etching with hydrofluoric acid. Uses: Energy storage, catalysis, analytical chemistry, mechanics, adsorption, biology, microelectronics, sensors, etc. Group: Mxenes materials. CAS No. 12363-89-2. 0.99.
SiO2 coated Upconverting Nanoparticles(green light). Uses: Up conversion nanoparticles have excellent optical stability. they have been widely applied in biomedicine, including in vivo bioimaging, in vivo bioimaging, biodetection, immunohistochemistry, microarray detection, photodynamic therapy, and photoactivated drug activation. Group: Sio2 coated upconverting nanoparticles. Pack Sizes: 10 mg/20 mg/50 mg.
SiO2 coated upconverting nanoparticles(near-infrared light). Uses: Up conversion noparticles have excellent optical stability. they have been widely applied in biomedicine, including in vivo bioimaging, in vivo bioimaging, biodetection, immunohistochemistry, microarray detection, photodymic therapy, and photoactivated drug activation. Group: Sio2 coated upconverting nanoparticles. Pack Sizes: 50 mg.
SiO2 coated Upconverting Nanoparticles(Purple and blue light)
SiO2 coated Upconverting Nanoparticles(Purple and blue light). Uses: Up conversion nanoparticles have excellent optical stability. they have been widely applied in biomedicine, including in vivo bioimaging, in vivo bioimaging, biodetection, immunohistochemistry, microarray detection, photodynamic therapy, and photoactivated drug activation. Group: Sio2 coated upconverting nanoparticles. Pack Sizes: 10 mg/20 mg/50 mg.
SiO2 coated Upconverting Nanoparticles(yellow-green light). Uses: Up conversion nanoparticles have excellent optical stability. they have been widely applied in biomedicine, including in vivo bioimaging, in vivo bioimaging, biodetection, immunohistochemistry, microarray detection, photodynamic therapy, and photoactivated drug activation. Group: Sio2 coated upconverting nanoparticles. Pack Sizes: 10 mg/20 mg/50 mg.
Small size monolayer Ti3C2 colloidal aqueous solution
Small size monolayer Ti3C2 colloidal aqueous solution. Uses: Biosensors, antibacterial, drug loading and other life science fields. Group: Mxenes materials. CAS No. 12363-89-2.
Small tube diameter multi-wall carbon nanotubes epoxy compound
Methane is a colorless odorless gas. It is also known as marsh gas or methyl hydride. It is easily ignited. The vapors are lighter than air. Under prolonged exposure to fire or intense heat the containers may rupture violently and rocket. It is used in making other chemicals and as a constituent of the fuel, natural gas.;Methane is a colorless odorless gas. It is also known as marsh gas or methyl hydride. It is easily ignited. The vapors are lighter than air. Under prolonged exposure to fire or intense heat the containers may rupture violently and rocket. It is used in making other chemicals and as a constituent of the fuel, natural gas.;Methane, refrigerated liquid (cryogenic liquid) is a colorless odorless liquid. Flammable. Water insoluble.;Natural gas, refrigerated liquid (cryogenic liquid) appears as a flammable liquefied gaseous mixture of straight chain hydrocarbons, predominately methane.;Natural gas, [compressed] appears as a flammable gaseous mixture of straight chain hydrocarbons, predominately compressed methane.;GasVapor; Liquid;Liquid;COLOURLESS ODOURLESS COMPRESSED OR LIQUEFIED GAS. Uses: By selecting proper dispersant and dispersing process, uniform and stable carbon notube epoxy compound was obtained. carbon notubes can be used in epoxy resin composites, conducting static electricity, strengthening and toughening. Group: Carbon nanotubes epoxy compound. CAS N
Alfa Chemistry offers high-purity (S)-N-(5-Nitro-2-pyridyl)phenylalaninol products for various research purposes. Please contact us by email if you do not find the specification you are looking for on this page. Uses: Nonlinear optical materials may be important for large-capacity communications, because further application of this material may provide a device in an all optical system. Group: Organic non-linear optical (nlo) materials. Alternative Names: 2-(N-L-Phenylalaninol)-5-nitropyridine. CAS No. 115416-53-0. Product ID: (2S)-2-[(5-nitropyridin-2-yl)amino]-3-phenylpropan-1-ol. Molecular formula: 273.29. Mole weight: C14H15N3O3. C1=CC=C (C=C1)CC (CO)NC2=NC=C (C=C2)[N+] (=O)[O-]. InChI=1S/C14H15N3O3/c18-10-12 (8-11-4-2-1-3-5-11)16-14-7-6-13 (9-15-14)17 (19)20/h1-7, 9, 12, 18H, 8, 10H2, (H, 15, 16)/t12-/m0/s1. XQQHMEFZBTXUTC-LBPRGKRZSA-N. 95%+.
(S)-(-)-N-(5-Nitro-2-pyridyl)prolinol
Alfa Chemistry offers high-purity (S)-(-)-N-(5-Nitro-2-pyridyl)prolinol products for various research purposes. Please contact us by email if you do not find the specification you are looking for on this page. Uses: Nonlinear optical materials may be important for large-capacity communications, because further application of this material may provide a device in an all optical system. Group: Organic non-linear optical (nlo) materials other materials. Alternative Names: (S)-(-)-1-(5-Nitro-2-pyridyl)-2-pyrrolidinemethanol 2-(N-Prolinol)-5-nitropyridine. CAS No. 88374-37-2. Product ID: [(2S)-1-(5-nitropyridin-2-yl)pyrrolidin-2-yl]methanol. Molecular formula: 223.23. Mole weight: C10H13N3O3. C1C[C@H] (N (C1)C2=NC=C (C=C2)[N+] (=O)[O-])CO. InChI=1S/C10H13N3O3/c14-7-9-2-1-5-12 (9)10-4-3-8 (6-11-10)13 (15)16/h3-4, 6, 9, 14H, 1-2, 5, 7H2/t9-/m0/s1. YBARIBJRNJYVTK-VIFPVBQESA-N. >99.0%(T).
Sodium metavanadate. Uses: Vanadium is a metallic element that occurs in six oxidation states and numerous inorganic compounds. some of the more important compounds are vanadium pentoxide (v2o5), sodium metavanadate (navo3), sodium orthovanadate (na3vo4), vanadyl sulfate (voso4), and ammonium vanadate (nh4vo3). vanadium is used primarily as an alloying agent in steels and non-ferrous metals (atsdr, 1990). vanadium compounds are also used as catalysts and in chemical, ceramic or specialty applications. Group: Electrolytes. Alternative Names: Vanadate,sodium. CAS No. 13718-26-8. Product ID: Sodium; oxido(dioxo)vanadium. Molecular formula: 121.93. Mole weight: NaO3V. [O-][V](=O)=O.[Na+]. InChI=1S/Na.3O.V/q+1;-1. CMZUMMUJMWNLFH-UHFFFAOYSA-N. 99%+.
Sodium Tetrafluoroborate. Uses: Metal plating, electropolishing, metal reprocessing, phase transfer media, batteries fuel cells, nanomaterials, industrial solvents, nuclear fuel red waste, enzymatic catalysis, lubricants heat transfer and solar energy conversion. Group: Battery materials. Alternative Names: Sodium Fluoroborate. CAS No. 13755-29-8. Product ID: sodium; tetrafluoroborate. Molecular formula: 109.79. Mole weight: NaBF4. [B-](F)(F)(F)F.[Na+]. InChI=1S/BF4.Na/c2-1(3,4)5;/q-1;+1. KGJZTOFHXCFQIV-UHFFFAOYSA-N. >95.0%(T).
SOLVENT BLUE 43
SOLVENT BLUE 43. Group: other materials. CAS No. 61813-75-0. Product ID: chlorane. Molecular formula: 36.46094;g/mol. Mole weight: ClH. Cl. VEXZGXHMUGYJMC-UHFFFAOYSA-N. 96%.
Solvent Red 197
Alfa Chemistry offers high-purity Solvent Red 197 products for various research purposes. Please contact us by email if you do not find the specification you are looking for on this page. Uses: Such coumarin dyes are useful for laser dyes emitting blue-green light. Group: Electronic materials coumarin dyes. Alternative Names: 3-(Diethylamino)-7-imino-7H-benzo[4,5]imidazo[1,2-a]chromeno[3,2-c]pyridine-6-carbonitrile. CAS No. 52372-39-1. Pack Sizes: 1G-Glass Bottle with Plastic Insert (View image). Product ID: 17-(diethylamino)-11-imino-14-oxa-3, 10-diazapentacyclo[11.8.0.02, 10.04, 9.015, 20]henicosa-1(21), 2, 4, 6, 8, 12, 15(20), 16, 18-nonaene-12-carbonitrile. Molecular formula: 381.44. Mole weight: C23H19N5O. CCN (CC)C1=CC2=C (C=C1)C=C3C (=C (C (=N)N4C3=NC5=CC=CC=C54)C#N)O2. InChI=1S/C23H19N5O/c1-3-27 (4-2)15-10-9-14-11-16-21 (29-20 (14)12-15)17 (13-24)22 (25)28-19-8-6-5-7-18 (19)26-23 (16)28/h5-12, 25H, 3-4H2, 1-2H3. FXFIDVQMNRVEGQ-UHFFFAOYSA-N. >98.0%(HPLC)(N).
Specific Graphene for Heat Dissipation and Antistatic Plastics
Carbon black oil appears as a dark colored liquid with a petroleum-like odor. Less dense than water and insoluble in water. Vapors heavier than air.;Carbon, activated is a black grains that have been treated to improve absorptive ability. May heat spontaneously if not properly cooled after manufacture.;Carbon, animal or vegetable origin appears as a black powder or granular mixed with a tar or starch and water binder pressed into regular lumps or briquettes. Heats slowly and ignites in air especially if wet.;Graphite (natural) appears as a mineral form of the element carbon. Hexagonal crystals or thin leaf-like layers. Steel-gray to black with a metallic luster and a greasy feel. An electrical conductor. Used for high-temperature crucibles, as a lubricant and in "lead" pencils.;DryPowder; DryPowder, Liquid; DryPowder, PelletsLargeCrystals; DryPowder, PelletsLargeCrystals, WetSolid, OtherSolid, Liquid; DryPowder, WetSolid, Liquid; Liquid; OtherSolid; OtherSolid, GasVapor, Liquid; PelletsLargeCrystals; PelletsLargeCrystals, OtherSolid, Liquid; WetSolid; WetSolid, Liquid;OtherSolid; PelletsLargeCrystals;DryPowder; DryPowder, OtherSolid; DryPowder, PelletsLargeCrystals; OtherSolid; PelletsLargeCrystals; PelletsLargeCrystals, OtherSolid; WetSolid;DryPowder; DryPowder, OtherSolid; DryPowder, PelletsLargeCrystals; DryPowder, WetSolid; Liquid; OtherSolid; PelletsLargeCrystals; Pellet
Carbon black oil appears as a dark colored liquid with a petroleum-like odor. Less dense than water and insoluble in water. Vapors heavier than air.;Carbon, activated is a black grains that have been treated to improve absorptive ability. May heat spontaneously if not properly cooled after manufacture.;Carbon, animal or vegetable origin appears as a black powder or granular mixed with a tar or starch and water binder pressed into regular lumps or briquettes. Heats slowly and ignites in air especially if wet.;Graphite (natural) appears as a mineral form of the element carbon. Hexagonal crystals or thin leaf-like layers. Steel-gray to black with a metallic luster and a greasy feel. An electrical conductor. Used for high-temperature crucibles, as a lubricant and in "lead" pencils.;DryPowder; DryPowder, Liquid; DryPowder, PelletsLargeCrystals; DryPowder, PelletsLargeCrystals, WetSolid, OtherSolid, Liquid; DryPowder, WetSolid, Liquid; Liquid; OtherSolid; OtherSolid, GasVapor, Liquid; PelletsLargeCrystals; PelletsLargeCrystals, OtherSolid, Liquid; WetSolid; WetSolid, Liquid;OtherSolid; PelletsLargeCrystals;DryPowder; DryPowder, OtherSolid; DryPowder, PelletsLargeCrystals; OtherSolid; PelletsLargeCrystals; PelletsLargeCrystals, OtherSolid; WetSolid;DryPowder; DryPowder, OtherSolid; DryPowder, PelletsLargeCrystals; DryPowder, WetSolid; Liquid; OtherSolid; PelletsLargeCrystals; PelletsLargeCrystals, O
Sulfur,pentafluorophenyl-,(oc-6-21)-. Group: other glass and ceramic materials. CAS No. 2557-81-5. Product ID: pentafluoro(phenyl)-??6-sulfane. Molecular formula: 204.16g/mol. Mole weight: C6H5F5S. C1=CC=C(C=C1)S(F)(F)(F)(F)F. InChI=1S/C6H5F5S/c7-12(8, 9, 10, 11)6-4-2-1-3-5-6/h1-5H. DMNYFEWFSFTYEL-UHFFFAOYSA-N.
Sulfur Quantum Dots
Sulfur Quantum Dots. Uses: Composite materials, coatings, construction of optoelectronic devices, etc. Group: Graphene quantum dots.
Super large size Nb2CTx nanosheet
The freeze-thaw method prepares super-large mxene nanosheets, the preparation temperature is low, the oxidation is effectively prevented, and the electrochemical and catalytic properties are excellent. Uses: Energy storage, catalysis, analytical chemistry, mechanics, adsorption, biology, microelectronics, sensors, etc. Group: Mxenes materials. CAS No. 12011-99-3. 0.99.
Super large size Ti2CTx nanosheet
The freeze-thaw method prepares super-large mxene nanosheets. The preparation temperature is low. The oxidation is effectively prevented. Uses: Energy storage, catalysis, analytical chemistry, mechanics, adsorption, biology, microelectronics, sensors, etc. Group: Mxenes materials. CAS No. 12316-56-2. 0.99.
Super large size Ti3C2Tx nanosheet
The freeze-thaw method prepares super-large mxene nanosheets. The preparation temperature is low. The oxidation is effectively prevented. Uses: Energy storage, catalysis, analytical chemistry, mechanics, adsorption, biology, microelectronics, sensors, etc. Group: Mxenes materials. CAS No. 12363-89-2. 0.99.
Super large size V2CTx nanosheet
The freeze-thaw method prepares super-large mxene nanosheets, the preparation temperature is low, the oxidation is effectively prevented, and the electrochemical and catalytic properties are excellent. Uses: Energy storage, catalysis, analytical chemistry, mechanics, adsorption, biology, microelectronics, sensors, etc. Group: Mxenes materials. 0.99.
Ta2AlC MAX phase ceramic material
Ta2AlC MAX phase ceramic material. Uses: Max special ceramics, mxene precursors, high-temperature coating materials, conductive self-lubricating materials, electronic materials, high-temperature structural materials, chemical anti-corrosion materials, high-temperature heating materials. Group: Mxenes materials. ≥99%.
Ta2C MXene quantum dots
Ta2C MXene quantum dots. Uses: Energy storage, catalysis, analytical chemistry, mechanics, adsorption, biology, microelectronics, sensors, etc. Group: Mxenes materials. 0.99.
Ta4AlC3 MAX phase material
Excellent Mxene precursor can be processed by HF or HCl+LiF to obtain MXene. Uses: Max has been widely used in nano-adsorption, biosensors, ion screening, catalysis, lithium ion batteries, supercapacitors, lubrication and many other fields. Group: Mxenes materials. 0.99.
Ta4C3 MXene quantum dots
Ta4C3 MXene quantum dots. Uses: Energy storage, catalysis, analytical chemistry, mechanics, adsorption, biology, microelectronics, sensors, etc. Group: Mxenes materials. 80-93wt%.
Ta4C3 single layer dispersion
Ta4C3 single layer dispersion. Uses: Energy storage, catalysis, analytical chemistry, mechanics, adsorption, biology, microelectronics, sensors, etc. Group: Mxenes materials. 80-93wt%.
Ta4C3 single layer powder
Ta4C3 single layer powder. Uses: Energy storage, catalysis, analytical chemistry, mechanics, adsorption, biology, microelectronics, sensors, etc. Group: Mxenes materials. 80-93wt%.
Tantalum Carbide Nanoparticles / Nanopowder. Uses: A mixture of tantalum carbide (tac) and graphite is a very hard material and is used to form the cutting edge of machine tools. Group: 3d printing materials. CAS No. 12070-06-3. Product ID: methanidylidynetantalum(1+). Molecular formula: 192.96. Mole weight: CTa. [C-]#[Ta+]. InChI=1S/C.Ta/q-1;+1. DUMHRFXBHXIRTD-UHFFFAOYSA-N. 99.9%.
Tantalum(V) butoxide. Uses: Precursor used for the sol-gel deposition of natao3 thin films. precursor used for the sol-gel deposition of tantalum doped tio2. used for the synthesis of tantalum oxide nanoparticles. Group: Solution deposition precursors. Alternative Names: 1-Butanol, tantalum(5+) salt (5:1). CAS No. 51094-78-1. Product ID: butan-1-olate; tantalum(5+). Molecular formula: 546.5. Mole weight: C20H45O5Ta. CCCC[O-]. CCCC[O-]. CCCC[O-]. CCCC[O-]. CCCC[O-]. [Ta+5]. InChI=1S/5C4H9O.Ta/c5*1-2-3-4-5; /h5*2-4H2, 1H3; /q5*-1; +5. QORWLRPWMJEJKP-UHFFFAOYSA-N. 98%.
Tantalum(V) ethoxide
Tantalum(V) ethoxide. Uses: Tantalum(V) ethoxide precursor is used to deposit ultra thin films of tantalum oxide and other tantalum containing films by atomic layer deposition and chemical vapor deposition methods. Group: Solution deposition precursorsvapor deposition precursors. Alternative Names: PET,Pentaethoxytantalum,Pentaethyl tantalate,Tantalum pentaethoxide. CAS No. 6074-84-6. Pack Sizes: 25 g in stainless steel cylinder. Product ID: ethanolate; tantalum(5+). Molecular formula: 406.25. Mole weight: Ta(OC2H5)5. CCO[Ta](OCC)(OCC)(OCC)OCC. 1S/5C2H5O.Ta/c5*1-2-3;/h5*2H2, 1H3;/q5*-1;+5, HSXKFDGTKKAEHL-UHFFFAOYSA-N. HSXKFDGTKKAEHL-UHFFFAOYSA-N.
Tantalum(V) fluoride
Tantalum(V) fluoride. Uses: Tantalum fluoride is a catalyst used to speed up organic chemical reactions. Group: Electrolytes. Alternative Names: Tantalum fluoride; tantalum (V) fluoride; MFCD00042542; AC1L32Z4; AC1Q4HKC; Tantalum(V)fluoride; 7783-71-3; Tantalum(V) fluoride, 98%. CAS No. 7783-71-3. Product ID: pentafluorotantalum. Molecular formula: 275.94g/mol. Mole weight: F5Ta;F5Ta. F[Ta](F)(F)(F)F. InChI=1S/5FH.Ta/h5*1H;/q;;;;;+5/p-5. YRGLXIVYESZPLQ-UHFFFAOYSA-I.