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TiO2 coated Upconverting Nanoparticles(UV 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: Tio2 coated upconverting nanoparticles. Pack Sizes: 10 mg/20 mg/50 mg.
TiO2/graphene nanocomposite
10 mg/mL, dispersion (in acetone). Group: Carbon nanomaterials.
TiO2/graphene nanocomposite
TiO2/graphene composite is highly crystalline graphene sheets hybridized with titanium oxide nanocrystals. The graphene sheets act as substrate and thickness is about 1~10 nm. The attached particle size of TiO2 is between 10-40 nm, and the loading density is in the range of 30%-70%. X-ray diffraction pattern confirms that the graphene sheets are well crystallized and the attached particles are TiO2. Uses: Photocatalyst dye sensitized solar cells. Group: Carbon nano materials.
MXene preparation-photocatalytic ordered TiO2Tx nanosheet/C composite material
The two-dimensional MXene is the precursor, which constructs an ordered nanosheet structure and modifies a uniform carbon layer at the same time to prepare a TiO2 photocatalyst with high visible light activity. Under visible light conditions, the photocatalytic activity of the titanium dioxide nanosheet/C composite is three times higher than that of titanium dioxide. Uses: Energy storage, catalysis, analytical chemistry, mechanics, adsorption, biology, microelectronics, sensors, etc. Group: Mxenes materials. CAS No. 12363-89-2. 0.99.
Titanium Oxide Nanoparticles (TiO2, anatase). Group: Elements nanoparticles. 99.5 %.
Titanium Oxide Nanoparticles (TiO2, rutile)
Titanium Oxide Nanoparticles (TiO2, rutile). Group: Elements nanoparticles. 99.5 %.
1,6-Hexanediol
1,6-Hexanediol is a saturated straight-chain diol, colorless liquid at room temperature, soluble in water. Industrially, 1,6-hexanediol can be synthesized by hydrogenation of adipic acid or its esters. It is usually prepared in the laboratory by the reduction of adipic acid with lithium aluminum hydride. Uses: 1,6-hexanediol can be used for a variety of s such as: a structure-directing agent for the synthesis of zsm-5 zeolite a solvent for titanium tetraisopropoxide to form titanium oxide (tio2) nanocrystals a phase change material in combination with lauric acid for thermal energy storage s. Group: 3d printing materials monomers. Alternative Names: Hexamethylene glycol. CAS No. 629-11-8. Pack Sizes: Packaging 50 g in poly bottle. Product ID: hexane-1,6-diol. Molecular formula: 118.17. Mole weight: HO(CH2)6OH. OCCCCCCO. 1S/C6H14O2/c7-5-3-1-2-4-6-8/h7-8H, 1-6H2. XXMIOPMDWAUFGU-UHFFFAOYSA-N. ≥ 97%.
1-Butyl-3-methylimidazolium Tetrafluoroborate
1-Butyl-3-methylimidazolium tetrafluoroborate is a hydrophilic room temperature ionic liquid (RTIL). It can be used as a reaction medium for the preparation NH4TiOF3 mesocrystals, which are converted into TiO2 based nanostructures. It can also be used as an electrolyte in lithium-ion batteries and double layer capacitors. Uses: Imidazole; special synthesis; ionic liquids. Group: Electrolytesbattery materials other electronic materials. Alternative Names: BMIMBF4. CAS No. 174501-65-6. Product ID: 1-butyl-3-methylimidazol-3-ium; tetrafluoroborate. Molecular formula: 226.03. Mole weight: C8H15BF4N2. [B-](F)(F)(F)F.CCCCN1C=C[N+](=C1)C. InChI=1S/C8H15N2. BF4/c1-3-4-5-10-7-6-9(2)8-10; 2-1(3, 4)5/h6-8H, 3-5H2, 1-2H3; /q+1; -1. LSBXQLQATZTAPE-UHFFFAOYSA-N. >98.0%HPLCN.
1-Hexyl-3-methylimidazolium Iodide
Hexyl-3-methylimidazolium iodide is a room temperature ionic liquid (RTIL) that can be prepared by reacting 1-methylimidazole with 1-iodohexane. The addition of HMImI to the electrolyte used in dye-sensitized nanocrystalline TiO2 solar cells increases its open-circuit photovoltage. Uses: Cas: 178631-05-5, mf: c10h19in2, mw: 294.18, purity: ≥98%. Group: Electrolytesbattery materials. Alternative Names: HMIMI. CAS No. 178631-05-5. Product ID: 1-hexyl-3-methylimidazol-3-ium; iodide. Molecular formula: 294.18. Mole weight: C10H19IN2. CCCCCCN1C=C[N+](=C1)C.[I-]. 1S/C10H19N2. HI/c1-3-4-5-6-7-12-9-8-11(2)10-12; /h8-10H, 3-7H2, 1-2H3; 1H/q+1; /p-1. CZIUVCSYOGFUPH-UHFFFAOYSA-M. >98.0%(HPLC).
1-Methyl-3-propylimidazolium Iodide
MPII in combination with poly(vinylidenefluoride-co-hexafluoropropylene) (PVDF-HFP) forms an ionic liquid polymer gel electolyte, which can be used in dye-sensitized nanocrystalline titanium dioxide (TiO2) solar cells. Uses: 1-methyl-3-propylimidazolium iodide is a non-aqueous electrolyte for dye-sensitized solar cells. Group: Electrolytesbattery materials. Alternative Names: MPII. CAS No. 119171-18-5. Product ID: 1-methyl-3-propylimidazol-1-ium; iodide. Molecular formula: 252.10. Mole weight: C7H13IN2. CCCN1C=C[N+](=C1)C.[I-]. 1S/C7H13N2.HI/c1-3-4-9-6-5-8(2)7-9; /h5-7H, 3-4H2, 1-2H3; 1H/q+1; /p-1. IVCMUVGRRDWTDK-UHFFFAOYSA-M. >97.0%(T)(HPLC).
2-(4-Fluorophenyl)-1-methyl-1H-benzo[d]imidazole
2-(4-Fluorophenyl)-1-methyl-1H-benzo[d]imidazole has been used as an electrolyte additive used to enhance the performance of dye-sensitized TiO2 solar cells. Group: Biochemicals. Grades: Highly Purified. CAS No. 724-59-4. Pack Sizes: 1g, 2.5g. Molecular Formula: C14H11FN2, Molecular Weight: 226.25. US Biological Life Sciences.
2-(4-Fluorophenyl)-1-methyl-d3-1H-benzo[d]imidazole is the labeled analogue of 2-(4-Fluorophenyl)-1-methyl-1H-benzo[d]imidazole (F595635), which has been used as an electrolyte additive used to enhance the performance of dye-sensitized TiO2 solar cells. Group: Biochemicals. Grades: Highly Purified. Pack Sizes: 1mg, 2.5mg. Molecular Formula: C14H8D3FN2, Molecular Weight: 229.27. US Biological Life Sciences.
Worldwide
2-Thiopheneacetic Acid
2-Thiopheneacetic Acid increases TiO2 surface wettability thus improving the TiO2/polymer contact in TiO2/P3HT hybrid solar cells. Group: Biochemicals. Grades: Highly Purified. CAS No. 1918-77-0. Pack Sizes: 1g, 10 g. Molecular Formula: C6H6O2S, Molecular Weight: 142.18. US Biological Life Sciences.
Worldwide
(3-Aminopropyl)trimethoxysilane
97%. Uses: Aptms can be multilayered on siox substrates by a layer by layer self assembly. aptms has also been used as a silane coupling agent on silver nanoparticles.aptms is used for the synthesis of gold nano-bipyramids which can be used as substrates for c-reactive protein (crp) antibodies that were detected by localized surface plasmon resonance(lspr). mesoporous silica matrix can be incorporated with aptms for the removal of chromium (cr) from waste water. it can also be used to silanize magnetic iron oxide nanoparticles(mionps) for the separation of cross-linked enzyme aggregations (cleas) from the reaction medium. it may be coated on tio2 to improve the power conversion efficiency (pce) as a critical parameter to assess the overall performance of heterojunction perovskite solar cells (pscs). Group: Saltself-assembly materials. Alternative Names: 3-(Trimethoxysilyl)propylamine. CAS No. 13822-56-5. Pack Sizes: 5 mL/100 mL/500 mL. Product ID: 3-trimethoxysilylpropan-1-amine. Molecular formula: 179.29 g/mol. Mole weight: C6H17NO3Si. CO[Si](CCCN)(OC)OC. InChI=1S/C6H17NO3Si/c1-8-11(9-2, 10-3)6-4-5-7/h4-7H2, 1-3H3. SJECZPVISLOESU-UHFFFAOYSA-N. 0.97.
3-Chloro-2-hydroxypropyltrimethyl Ammonium Chloride (60% in Water)
3-Chloro-2-hydroxypropyltrimethyl ammonium chloride is used in the preparation of multifunctional cationized cotton fabric based on TiO2 nanomaterials. Group: Biochemicals. Grades: Highly Purified. CAS No. 3327-22-8. Pack Sizes: 1g, 10g. Molecular Formula: C6H15Cl2NO. US Biological Life Sciences.
Worldwide
3-Octanol
3-Octanol. Synonyms: 1-ethylhexanol; 3-0ctanol; Amylethylcarbinol; D-n-Octanol; n-Octan-3-ol; Octan-3-ol; DL-3-OCTANOL; ETHYL-N-AMYLCARBINOL. CAS No. 589-98-0. Product ID: CDC10-0214. Molecular formula: C8H18O. Category: Fragrance Agents. Product Keywords: Cosmetic Ingredients; Fragrance Agents; 3-Octanol; CDC10-0214; 589-98-0; C8H18O; 1-ethylhexanol; 3-0ctanol; Amylethylcarbinol; D-n-Octanol; n-Octan-3-ol; Octan-3-ol; DL-3-OCTANOL; ETHYL-N-AMYLCARBINOL; 209-667-4; MFCD00004590; 589-98-0. Purity: 0.99. Color: Clear colorless. EC Number: 209-667-4. Physical State: Liquid. Quality Level: 100. Storage: Store below 30°C. Boiling Point: 174-176 °C (lit.). Melting Point: -45 °C. Density: 0.818 g/mL at 25 °C (lit.). Product Description: Influence of environment of the TiO2 photocatalyst on the rate of photocatalytic oxidation of liquid 3-octanol has been investigated.
[5,6]-Fullerene-C70
(5,6)-Fullerene-C70 (C70) is an ellipsoidal fullerene which has stable spheroidal carbon molecules. C70 is an n-channel organic semiconductor. High reactivity of fullerenes is attributed to its characteristic pyramidalization of the sp2 carbons. Vacuum dried to remove residual solvent.Typical hydrocarbon content <0.25%. Uses: C70 may be incorporated into titanium oxide (tio2) based nanowires and it forms a nanocomposite for light responsive photocatalyst. it can also be used as a photo-absorptive material in the fabrication of high performance organic photovoltaic (opv) cells. Group: other nano materials. Alternative Names: BuckminsterfullereneC70,Fullerene-C70. CAS No. 115383-22-7. Product ID: (C\{70}-D\{5h(6)})fullerene. Molecular formula: 840.75. Mole weight: C70. C1CC2C3CCC4C5C3C6C2C7C1CC8CC9CC% 10CC% 11C% 12CC% 13CC4C% 13% 14C% 12C% 15C% 11C% 16C% 10C9C% 17C8C7C% 18C% 17C% 16C% 15C (C6% 18) C5% 14. 98%.
[5,6]-Fullerene-C70
(5,6)-Fullerene-C70 (C70) is an ellipsoidal fullerene which has stable spheroidal carbon molecules. C70 is an n-channel organic semiconductor. High reactivity of fullerenes is attributed to its characteristic pyramidalization of the sp2 carbons. Vacuum dried to remove residual solvent.Typical hydrocarbon content <0.25%. Uses: C70 may be incorporated into titanium oxide (tio2) based nanowires and it forms a nanocomposite for light responsive photocatalyst. it can also be used as a photo-absorptive material in the fabrication of high performance organic photovoltaic (opv) cells. Group: Supercapacitorscarbon nano materials organic field effect transistor (ofet) materials organic solar cell (opv) materials sublimed materials. Alternative Names: BuckminsterfullereneC70,Fullerene-C70. CAS No. 115383-22-7. Pack Sizes: 250 mg in glass insert. Product ID: (C\{70}-D\{5h(6)})fullerene. Molecular formula: 840.75. Mole weight: C70. C1CC2C3CCC4C5C3C6C2C7C1CC8CC9CC% 10CC% 11C% 12CC% 13CC4C% 13% 14C% 12C% 15C% 11C% 16C% 10C9C% 17C8C7C% 18C% 17C% 16C% 15C (C6% 18) C5% 14. 1S / C70 / c1-2-22-5-6-24-13-14-26-11-9-23-4-3 (21 (1) 51-52 (22) 54 (24) 55 (26) 53 (23) 51) 33-31 (1) 61-35-7-8-27-15-16-29-19-20-30-18-17- 28-12-10 (25 (7) 56-57 (27) 59 (29) 60 (30) 58 (28) 56) 37 (35) 63 (33) 65-36 (4) 40 (9) 67 (44 (17) 42 (12) 65 ) 69-46 (11) 47 (14) 70 (50 (20) 49 (18) 69) 68-43 (13) 39 (6) 66 (45 (16) 48 (19) 6 8) 64-34 (5) 32 (2) 62 (61) 38
Butyl Oleate is used to fabricate nanoporous anatase TiO2 mesocrystals with tunable architectures and crystal phases. Grades: 95%. CAS No. 142-77-8. Molecular formula: C22H42O2. Mole weight: 338.56800.
Butyl Oleate
Butyl Oleate is used to fabricate nanoporous anatase TiO2 mesocrystals with tunable architectures and crystal phases. Also, it improves palmarumycins C12 and C13 production in suspension culture of Berkleasmium sp. Dzf12. Group: Biochemicals. Grades: Highly Purified. CAS No. 142-77-8. Pack Sizes: 500mg, 1g. Molecular Formula: C22H42O2. US Biological Life Sciences.
Worldwide
Chlorine Bulk 99.5-100%
Chlorine in railcars from Mexico. Uses: Water treatment. bleach manufacturers, tio2 manufacturers, bromine manufacturers, chlorinated parafines manufacturers. CAS No. 7782-50-5. Pack Sizes: BULK. Product ID: UN 1017. Molecular formula: NSF , KOSHER. Categories: paraffins.
c. i. Pigment yellow 53(77788)
c. i. Pigment yellow 53(77788). Uses: Designed for use in research and industrial production. Additional or Alternative Names: C. I. Pigment Yellow 53 (77788);C.I. 77788. Appearance: yellow powder. CAS No. 8007-18-9. Molecular formula: TiO2-NiO-Sb2O3. Mole weight: 0. Purity: 0.96. Product ID: ACM8007189. Alfa Chemistry ISO 9001:2015 Certified.
D358 Dye
D358 Dye. Uses: Photosensitive red-violet dye having excellent photoelectric conversion efficiency as a metal-free dye. efficiency of dssc device - η > 6.7%cell area: 0.25 cm2 (0.5 cm × 0.5 cm)tio2 thickness: 5 μmtio2: screen printingelectrolyte: 0.1 m lii; 0.05 m i2; 0.6 m dimethyl propylimidazoliumiodide; 0.05 m t-butylpyridine in 3-methoxypropionitrilelight source: am1.5counter electrode: pt/. Group: Organic solar cell (opv) materials. Alternative Names: 5-[3-(Carboxymethyl)-5-[[4-[4-(2,2-diphenylethenyl)phenyl]-1,2,3,3a,4,8b-hexahydrocyclopent[b]indol-7-yl]methylene]-4-oxo-2-thiazoli dinylidene]-4-oxo-2-thioxo-3-thiazolidinedodecanoic acid. CAS No. 1207638-53-6. Pack Sizes: 100 mg in glass insert. Product ID: 12-[(5E)-5-[(5E)-3-(carboxymethyl)-5-[[4-[4-(2,2-diphenylethenyl)phenyl]-2,3,3a,8b-tetrahydro-1H-cyclopenta[b]indol-7-yl]methylidene]-4-oxo-1,3-thiazolidin-2-ylidene]-4-oxo-2-sulfanylidene-1,3-thiazolidin-3-yl]dodecanoic acid. Molecular formula: 912.2g/mol. Mole weight: C52H53N3O6S3. S=C (S/C1=C2N (CC (O) =O) C (/C (S\2) =C\C (C=C3) =CC4=C3N (C5=CC=C (C=C (C6=CC=CC=C6) C7=CC=CC=C7) C=C5) C8C4CCC8) =O) N (CCCCCCCCCCCC (O) =O) C1=O. 1S/C52H53N3O6S3/c56-46 (57) 23-14-6-4-2-1-3-5-7-15-30-53-50 (61) 48 (64-52 (53) 62) 51-54 (34-47 (58) 59) 49 (60) 45 (63-51) 33-36-26-29-44-42 (32-36) 40-21-16-22-43 (40) 55 (44) 39-27-24-35 (25-28-39) 31-41 (37-17-10-8-11-18-37) 38-19-12-9-13-20-38/h8-13, 17-20, 24-29, 31-33
Titanium dioxide is an odorless white powder. Tasteless. pH 7.5. Occurs in three crystalline forms. (NTP, 1992);Liquid;DryPowder; Liquid; OtherSolid;DryPowder; DryPowder, Liquid; DryPowder, OtherSolid; DryPowder, PelletsLargeCrystals, Liquid; DryPowder, WetSolid; Liquid; OtherSolid; OtherSolid, Liquid; PelletsLargeCrystals; WetSolid; WetSolid, Liquid;White to slightly coloured powder;COLOURLESS-TO-WHITE CRYSTALLINE POWDER.;White, odorless powder.;White, odorless powder. Group: Organic solar cell (opv) materials. CAS No. 1317-80-2. Product ID: dioxotitanium. Molecular formula: 79.87g/mol. Mole weight: TiO2;TiO2;TiO2;O2Ti. O=[Ti]=O. InChI=1S/2O.Ti. GWEVSGVZZGPLCZ-UHFFFAOYSA-N.
Indium tin oxide coated glass slide, rectangular
Indium tin oxide (ITO) is widely used as transparent conducting oxides. Its major characteristics are electrical conductivity, optical transparency and the ease to be deposited as films. Uses: Ito was used to mount frozen sections of mouse brain and heart.ito cover slides may be used for closed digital microfluidic devices. some other uses that have been reported are: eumelanin samples prepared on ito covered glass substrates. interface windows of the liquid cell for optical beam delection (obd) sensing contain a 20-nm-thick indium tin oxide film mesoporous tio2 films were formed on ito conductive glassesi. Group: Substrates and electrode materials. Alternative Names: ITO coated slide, rectangular,ITO. CAS No. 50926-11-9. Pack Sizes: 10, 25 pkg in poly tube. Mole weight: In2O3 · (SnO2)x. O=[Sn]=O.O=[In]O[In]=O. 1S/2In.5O.Sn. LNNWKAUHKIHCKO-UHFFFAOYSA-N.
Indium tin oxide coated glass slide, square
Indium tin oxide (ITO) is widely used as transparent conducting oxides. Its major characteristics are electrical conductivity, optical transparency and the ease to be deposited as films. Uses: Ito glass slides were used as a substrate for fabricating polymer solar cells based on blends of polymeric semiconductors and organic light emitting diodes (oleds). ito substrates can also be used to design transparent heater arrays by etching the surface of the substrate by a printing tool. ito cover slides may be used for closed digital microfluidic devices and as transparent electrodes in display and other optoelectronic devices.some other probable uses that has been reported are: eumelanin samples prepared on ito covered glass substrates. interface windows of the liquid cell for optical beam deflection (obd) sensing contains a 20-nm-thick indium tin oxide film. mesoporous tio2 films were formed on ito conductive glasses. Group: Substrates and electrode materials. Alternative Names: ITO coated slide, square,ITO. CAS No. 50926-11-9. Pack Sizes: 10 pkg in poly bag. Mole weight: In2O3 · (SnO2)x. O=[Sn]=O.O=[In]O[In]=O. 1S/2In.5O.Sn. LNNWKAUHKIHCKO-UHFFFAOYSA-N.
Iron Oxide Silicon Dioxide Titanium Oxide Core Shell
Iron Oxide Silicon Dioxide Titanium Oxide Core Shell. Group: Core shell nanoparticles. CAS No. 1309-37-1. Mole weight: Fe3O4/SiO2@TiO2. > 99.99%.
Nano Titanium dioxide
Titanium dioxide is an odorless white powder. Tasteless. pH 7.5. Occurs in three crystalline forms. (NTP, 1992);Liquid;DryPowder; Liquid; OtherSolid;DryPowder; DryPowder, Liquid; DryPowder, OtherSolid; DryPowder, PelletsLargeCrystals, Liquid; DryPowder, WetSolid; Liquid; OtherSolid; OtherSolid, Liquid; PelletsLargeCrystals; WetSolid; WetSolid, Liquid;White to slightly coloured powder;COLOURLESS-TO-WHITE CRYSTALLINE POWDER.;White, odorless powder.;White, odorless powder. Group: Phosphors - phosphor materials. CAS No. 13463-67-7. Product ID: dioxotitanium. Molecular formula: 79.87g/mol. Mole weight: TiO2;TiO2;TiO2;O2Ti. O=[Ti]=O. InChI=1S/2O.Ti. GWEVSGVZZGPLCZ-UHFFFAOYSA-N. 99wt%.
This product is an enabling product used as a Hole Transport Material for high-performance solar cells and thus has been enhanced for energy efficiency. Uses: High-mobility material used for white oleds to increase hole injection and transport. it is the best solid-state hole transporting material, to date, used to replace the liquid electrolyte for dssc solar cells, due to an excellent pore-filling property in nanoporous tio2 film with pore size of around 30-50 nm; attributed to its small molecular size. Group: Organic light-emitting diode (oled) materials. Alternative Names: N2,N2,N2',N2',N7,N7,N7',N7'-octakis(4-methoxyphenyl)-9,9'-spirobi[9H-fluorene]-2,2',7,7'-tetramine,Spiro-OMeTAD. CAS No. 207739-72-8. Pack Sizes: 1, 5 g in glass bottle. Product ID: 2,2,7,7-tetrakis(N,N-di-p-methoxyphenyl-amine)-9,9-spirobifluorene. Molecular formula: 1225.43. Mole weight: C81H68N4O8. COC (C=C1)=CC=C1N (C2=CC=C (C=C2)OC)C (C=C3)=CC4=C3C (C=CC (N (C5=CC=C (C=C5)OC)C6=CC=C (C=C6)OC)=C7)=C7C84C9=C (C=CC (N (C%10=CC=C (C=C%10)OC)C%11=CC=C (C=C%11)OC)=C9)C%12=C8C=C (N (C%13=CC=C (C=C%13)OC)C%14=CC=C (C=C%14)OC)C=C%12. InChI=1S/C81H68N4O8/c1-86-65-29-9-53 (10-30-65) 82 (54-11-31-66 (87-2) 32-12-54) 61-25-45-73-74-46-26-62 (83 (55-13-33-67 (88-3) 34-14-55) 56-15-35-68 (89-4) 36-16-56) 50-78 (74) 81 (77 (73) 49-61) 79-51-63 (84 (57-17-37-69 (90-5) 38-18-57) 58-19-39-70 (91-6) 40-20-58) 27-47-75 (79) 76-48-28-64 (52-80 (76) 81) 85 (59-21-41-71
Spiro-MeOTAD
This product is an enabling product used as a Hole Transport Material for high-performance solar cells and thus has been enhanced for energy efficiency. Uses: High-mobility material used for white oleds to increase hole injection and transport. it is the best solid-state hole transporting material, to date, used to replace the liquid electrolyte for dssc solar cells, due to an excellent pore-filling property in nanoporous tio2 film with pore size of around 30-50 nm; attributed to its small molecular size. Group: Silsesquioxane (poss). Alternative Names: N2,N2,N2',N2',N7,N7,N7',N7'-octakis(4-methoxyphenyl)-9,9'-spirobi[9H-fluorene]-2,2',7,7'-tetramine,Spiro-OMeTAD. CAS No. 207739-72-8. Product ID: 2,2,7,7-tetrakis(N,N-di-p-methoxyphenyl-amine)-9,9-spirobifluorene. Molecular formula: 1225.43. Mole weight: C81H68N4O8. COC (C=C1)=CC=C1N (C2=CC=C (C=C2)OC)C (C=C3)=CC4=C3C (C=CC (N (C5=CC=C (C=C5)OC)C6=CC=C (C=C6)OC)=C7)=C7C84C9=C (C=CC (N (C%10=CC=C (C=C%10)OC)C%11=CC=C (C=C%11)OC)=C9)C%12=C8C=C (N (C%13=CC=C (C=C%13)OC)C%14=CC=C (C=C%14)OC)C=C%12. 95%+.
Tantalum(V) butoxide
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%.
Titanate Nanofibers
Titanium dioxide is an odorless white powder. Tasteless. pH 7.5. Occurs in three crystalline forms. (NTP, 1992);Liquid;DryPowder; Liquid; OtherSolid;DryPowder; DryPowder, Liquid; DryPowder, OtherSolid; DryPowder, PelletsLargeCrystals, Liquid; DryPowder, WetSolid; Liquid; OtherSolid; OtherSolid, Liquid; PelletsLargeCrystals; WetSolid; WetSolid, Liquid;White to slightly coloured powder;COLOURLESS-TO-WHITE CRYSTALLINE POWDER.;White, odorless powder.;White, odorless powder. Group: Substrates and electrode materials. CAS No. 1317-80-2. Product ID: dioxotitanium. Molecular formula: 79.87g/mol. Mole weight: TiO2;TiO2;TiO2;O2Ti. O=[Ti]=O. InChI=1S/2O.Ti. GWEVSGVZZGPLCZ-UHFFFAOYSA-N. 99%.
Titania paste, active opaque
Titania paste, active opaque is a precursor for titania that has anatase particles and larger sized anatase scatter particles, used to form a white coating on the fluorine doped tin oxide glass (FTO) substrate. It is used in a variety of electrochemical devices to improve electron mobility and power efficiency. Uses: Titania paste has a hierarchical pore structure which allows non-agglomerated loading on nanomaterials for the fabrication of dye sensitized solar cells with higher light absorption.use active opaque titania paste in applications that do not require transparency.the dispersed scattering particles in active opaque titania paste formulation lead to enhanced dsc performance through the large surface/. Group: 3d printing materials perovskite materials organic solar cell (opv) materials printed electronic materials. Alternative Names: Dyesol(R) 18NR-AO Titania Paste, TiO2 paste. Pack Sizes: 5 g/20 g. Product ID: dioxotitanium. Molecular formula: 79.87g/mol. Mole weight: TiO2;TiO2;TiO2;O2Ti. O=[Ti]=O. 1S/2O.Ti. GWEVSGVZZGPLCZ-UHFFFAOYSA-N.
Titania paste, reflector
Titania paste, the reflector is a precursor for titania, that forms a mesoporous light scattering layer on the fluorine doped tin oxide (FTO) substrates. It is used in a variety of electrochemical devices to improve electron mobility and power efficiency. Uses: Light scattering titania paste can be coated on the primary transparent layer of tio2 to form a bilayered titanium film. it can be used as a negative electrode for dye sensitized solar cells (dsscs).scattering reflector titania paste can be used in conjunction with transparent titania paste for enhanced dssc performance in applications where transparency is not required.scattering titania paste contains highly dispersed anatase scattering particles (150nm to 250nm). this paste produces a non-active scattering layer when applied onto a pre-printed active layer.after drying; this paste must be fired - together with the pre-printed active layers - at or above 500°c. this results in an opaque sintered layer; with a thickness of ~3μm for one printed layer; when using a 90t mesh screen.storage: store in the dark at 20°c. Group: 3d printing materials perovskite materials organic solar cell (opv) materials printed electronic materials. Alternative Names: TiO2 paste, Dyesol(R) WER2-O. Pack Sizes: 5 g/20 g. Product ID: dioxotitanium. Molecular formula: 79.87g/mol. Mole weight: TiO2;TiO2;TiO2;O2Ti. O=[Ti]=O. 1S/2O.Ti. GWEVSGVZZGPLCZ-UHFFFAOYSA-N.
Titania paste, transparent
Titanium dioxide is an odorless white powder. Tasteless. pH 7.5. Occurs in three crystalline forms. (NTP, 1992);Liquid;DryPowder; Liquid; OtherSolid;DryPowder; DryPowder, Liquid; DryPowder, OtherSolid; DryPowder, PelletsLargeCrystals, Liquid; DryPowder, WetSolid; Liquid; OtherSolid; OtherSolid, Liquid; PelletsLargeCrystals; WetSolid; WetSolid, Liquid;White to slightly coloured powder;COLOURLESS-TO-WHITE CRYSTALLINE POWDER.;White, odorless powder.;White, odorless powder. Uses: Use transparent titania paste in applications that require a transparent sintered titania film with a large surface/volume ratio. transparent titania paste is formulated to yield sintered film thicknesses of 6-7μm when screen printed with a 43t mesh. transparent titania paste has highly dispersed and stable anatase nanoparticles.it is optimised for screen printing using a synthetic 43t mesh scr. Group: 3d printing materials perovskite materials organic solar cell (opv) materials printed electronic materials. Alternative Names: greatcell Solar, TiO2 paste. Pack Sizes: 10 g/20 g. Product ID: dioxotitanium. Molecular formula: 79.87g/mol. Mole weight: TiO2;TiO2;TiO2;O2Ti. O=[Ti]=O. InChI=1S/2O.Ti. GWEVSGVZZGPLCZ-UHFFFAOYSA-N.
White pigment of crystalline structure with a high refractive index & great inertness able to reflect & scatter light. Derived from the naturally occurring mineral ilmenite. Synonyms: cosmetic white, rutile, brookite, tipaque, zopaque, titanic anhydride. Primary particle size 200-250 nm, purity >98%. Uses: Sun care products, color cosmetics with or without sun protection. Group: Optical coatings. CAS No. 13463-67-7. Pack Sizes: 25 kg. Product ID: Dioxotitanium. Molecular formula: 79.87. Mole weight: TiO2. O=[Ti]=O. InChI=1S/2O.Ti. GWEVSGVZZGPLCZ-UHFFFAOYSA-N. 95%+.
Titanium Di Oxide
Titanium dioxide, TiO2, is a white powder and has the greatest hiding power of all white pigments. It is noncombustible; however, it is a powder and, when suspended in air, may cause a dust explosion if an ignition source is present. It is not listed in the DOT Hazardous Materials Table, and the DOT does not consider it hazardous in transportation. The primary uses are as a white pigment in paints, paper, rubber, and plastics; in cosmetics; in welding rods; and in radioactive decontamination of the skin. Uses: Titanium (IV) dioxide (TiO2), also known as rutile, is one of the best-known compounds used as a paint pigment. It is ideal for paints exposed to severe temperatures and marine climates because of its inertness and self-cleaning attributes. It is also used in manufacture of glassware, ceramics, enamels, welding rods, and floor coverings. Group: Natural Product. Alternative Names: Titanium dioxide, also known as titanium(IV) oxide or titania. Grades: Anatase, Rutile. CAS No. 13463-67-7. Pack Sizes: 25 Kgs Bags.
Titanium Dioxide Anatase Nanodispersion (15nm)
Titanium dioxide is an odorless white powder. Tasteless. pH 7.5. Occurs in three crystalline forms. (NTP, 1992);Liquid;DryPowder; Liquid; OtherSolid;DryPowder; DryPowder, Liquid; DryPowder, OtherSolid; DryPowder, PelletsLargeCrystals, Liquid; DryPowder, WetSolid; Liquid; OtherSolid; OtherSolid, Liquid; PelletsLargeCrystals; WetSolid; WetSolid, Liquid;White to slightly coloured powder;COLOURLESS-TO-WHITE CRYSTALLINE POWDER.;White, odorless powder.;White, odorless powder. Group: Nanodispersions. CAS No. 13463-67-7. Product ID: dioxotitanium. Molecular formula: 79.87g/mol. Mole weight: TiO2;TiO2;TiO2;O2Ti. O=[Ti]=O. InChI=1S/2O.Ti. GWEVSGVZZGPLCZ-UHFFFAOYSA-N.
Titanium Dioxide Catalyst Nanopowder
Titanium dioxide is an odorless white powder. Tasteless. pH 7.5. Occurs in three crystalline forms. (NTP, 1992);Liquid;DryPowder; Liquid; OtherSolid;DryPowder; DryPowder, Liquid; DryPowder, OtherSolid; DryPowder, PelletsLargeCrystals, Liquid; DryPowder, WetSolid; Liquid; OtherSolid; OtherSolid, Liquid; PelletsLargeCrystals; WetSolid; WetSolid, Liquid;White to slightly coloured powder;COLOURLESS-TO-WHITE CRYSTALLINE POWDER.;White, odorless powder.;White, odorless powder. Group: Nanopowders. CAS No. 13463-67-7. Product ID: dioxotitanium. Molecular formula: 79.87g/mol. Mole weight: TiO2;TiO2;TiO2;O2Ti. O=[Ti]=O. InChI=1S/2O.Ti. GWEVSGVZZGPLCZ-UHFFFAOYSA-N.