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Perovskite FAPbBr3 Powder, >99%. Group: other glass and ceramic materials. CAS No. 1008105-17-6.
Perovskite quantum dots
Perovskite quantum dots (PQDs) are semiconducting materials with high luminescent efficiency. They have a low threshold, tuneable wavelength and ultra-stable stimulated emission (SE). These semiconductors are a class of hybrid inorganic and organic metal halide based perovskite materials. They have a direct bandgap which can be useful for a variety of optoelectronic devices. Uses: Bioimaging photocatalysis led energy conversion sensing. Group: other quantum dots.
Perovskite quantum dots
Perovskite quantum dots (PQDs) are semiconducting materials with high luminescent efficiency. They have a low threshold, tuneable wavelength and ultra-stable stimulated emission (SE). These semiconductors are a class of hybrid inorganic and organic metal halide based perovskite materials. They have a direct bandgap which can be useful for a variety of optoelectronic devices. Uses: Bioimaging photocatalysis led energy conversion sensing. Group: Quantum dots.
OtherSolid;COLOURLESS CRYSTALS OR WHITE CRYSTALLINE POWDER. Group: Perovskite solar cell (psc) materials. CAS No. 301-04-2. Product ID: lead(2+); diacetate. Molecular formula: 325g/mol. Mole weight: C4H6O4Pb;(CH3COO)2Pb;C4H6O4Pb. CC(=O)[O-].CC(=O)[O-].[Pb+2]. InChI=1S/2C2H4O2.Pb/c2*1-2(3)4; /h2*1H3, (H, 3, 4); /q; ; +2/p-2. GUWSLQUAAYEZAF-UHFFFAOYSA-L.
Lead(II) Chloride [for Perovskite precursor]
Lead chloride appears as a white solid.;DryPowder. Group: Perovskite solar cell (psc) materials. CAS No. 7758-95-4. Product ID: dichlorolead. Molecular formula: 278g/mol. Mole weight: PbCl2;Cl2Pb. Cl[Pb]Cl. InChI=1S/2ClH.Pb/h2*1H;/q;;+2/p-2. HWSZZLVAJGOAAY-UHFFFAOYSA-L.
Lead(II) Chloride (purified by sublimation) [for Perovskite precursor]
Lead chloride appears as a white solid.;DryPowder. Group: other material building blocksperovskite solar cell (psc) materials. CAS No. 7758-95-4. Product ID: dichlorolead. Molecular formula: 278g/mol. Mole weight: PbCl2;Cl2Pb. Cl[Pb]Cl. InChI=1S/2ClH.Pb/h2*1H;/q;;+2/p-2. HWSZZLVAJGOAAY-UHFFFAOYSA-L.
Red light perovskite quantum dots. Group: Quantum dots.
Tin(II) Bromide [for Perovskite precursor]
Tin(II) Bromide [for Perovskite precursor]. Group: Perovskite solar cell (psc) materials. CAS No. 10031-24-0.
Tin(II) Chloride [for Perovskite precursor]
Stannous chloride, solid appears as crystalline mass or flaky solid with a fatty appearance. Density 3.95 g / cm³. Melting point 247°C. Burns, but may be difficult to ignite. Toxic by ingestion. Irritates skin and eyes. Used in the manufacture of dyes, pharmaceuticals and as a tanning agent.;DryPowder; OtherSolid, Liquid; PelletsLargeCrystals;COLOURLESS OR WHITE CRYSTALS. Group: Perovskite solar cell (psc) materials. CAS No. 7772-99-8. Product ID: dichlorotin. Molecular formula: 189.61g/mol. Mole weight: SnCl2;SnCl2;Cl2Sn. Cl[Sn]Cl. InChI=1S/2ClH.Sn/h2*1H;/q;;+2/p-2. AXZWODMDQAVCJE-UHFFFAOYSA-L.
Tin(II) Iodide [for Perovskite precursor]
Tin(II) Iodide [for Perovskite precursor]. Group: Perovskite solar cell (psc) materials. CAS No. 10294-70-9.
1,2-Bis[(3,6-dibromo-9H-carbazol-9-yl)methyl]benzene is a reagent for the synthesis of methoxydiphenylamine substituted carbazole, an efficient hole transporting material for perovskite solar cells. Group: Biochemicals. Grades: Highly Purified. CAS No. 222166-46-3. Pack Sizes: 250mg, 500mg. Molecular Formula: C32H20Br4N2, Molecular Weight: 752.13. US Biological Life Sciences.
1,3-Diaminopropane DihydroChloride (Low water content)
1,3-Diaminopropane DihydroChloride (Low water content). Group: Electronic materials perovskite solar cell (psc) materials. Alternative Names: Trimethylenediamine DihydroChloride (Low water content); 1,3-Propanediamine DihydroChloride (Low water content). CAS No. 10517-44-9. Product ID: propane-1,3-diamine; dihydrochloride. Molecular formula: 147.04 g/mol. Mole weight: C3H12Cl2N2. C(CN)CN.Cl.Cl. InChI=1S/C3H10N2.2ClH/c4-2-1-3-5; ; /h1-5H2; 2*1H. HYOCSVGEQMCOGE-UHFFFAOYSA-N. >98.0%(T)(N).
1,3-Diaminopropane DihydroIodide
Organohalide based perovskites have emerged as an important class of material for solar cell applications. Our perovskites precursors are useful for synthesizing mixed cation or anion perovskites needed for the optimization of the band gap, carrier diffusion length and power conversion efficiency of perovskites based solar cells. Group: Electronic materials perovskite solar cell (psc) materials. Alternative Names: 1,3-Propanediamine DihydroIodide; Trimethylenediamine DihydroIodide. CAS No. 120675-53-8. Product ID: propane-1,3-diamine; dihydroiodide. Molecular formula: 329.95 g/mol. Mole weight: C3H10N2 2HI. C(CN)CN.I.I. 1S/C6H7N.HI/c7-6-4-2-1-3-5-6;/h1-5H, 7H2;1H. KFQARYBEAKAXIC-UHFFFAOYSA-N. >98.0%(T)(N).
3,6-Bis(5-bromo-2-thienyl)-2,5-bis(2-hexyldecyl)-2,5-dihydro-pyrrolo[3,4-c]pyrrole-1,4-dione (DDP-Br2) belongs to the series of diketopyrrolopyrrole (DPP) based materials which show hole or ambipolar transport behavior with mobilities of charge carriers in the range of 0.1-1 cm2V-1 s-1. It has an electron deficient core that forms a low LUMO energy level which facilitates better air-stability for n-type organic semiconductors. Uses: Ddp-br2 can be used in the fabrication of a variety of opto-electronic devices such as organic field effect transistors (ofets), perovskite based solar cells, non-fullerene organic solar cells. novel acceptors utilized in low band gap polymer cells and showed optical bandgaps ranging from 1.81 to 1.94 ev and intense absorption bands that cover a wide range from 300 to 700 nm. Group: Synthetic tools and reagents. Alternative Names: Pyrrolo[3,4-c]pyrrole-1,4-dione,3,6-bis(5-bromo-2-thienyl)-2-5-bis(2-hexyldecyl)-2,5-dihydro-. CAS No. 1000623-98-2. Pack Sizes: Packaging 500 mg in glass insert. Product ID: 1,4-bis(5-bromothiophen-2-yl)-2,5-bis(2-hexyldecyl)pyrrolo[3,4-c]pyrrole-3,6-dione. Molecular formula: 907.00. Mole weight: C46H70Br2N2O2S2. O=C1N (CC (CCCCCC)CCCCCCCC)C (C2=CC=C (Br)S2)=C3C1=C (C4=CC=C (Br)S4)N (CC (CCCCCC)CCCCCCCC)C3=O. 1S / C46H70Br2N2O2S2 / c1-5-9-13-17-19-23-27-35 (25-21-15-11-7-3) 33-49-43 (37-29-
(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.
4-(1',5'-Dihydro-1'-methyl-2'H-[5,6]fullereno-C60-Ih-[1,9-c]pyrrol-2'-yl)benzoic acid (C60-SAM) is a fullerene based self-assembled monolayer that can be used to functionalize the oxide surface for the formation electron selective layer (ECL). It can act as a good electron donor with a high electron affinity. It enhances the overall efficiency of perovskite solar cells (PSCs) by reducing the hysteresis. Uses: Fullerene-based self-assembled monolayers for use in organic electronic devices such as inverted polymer solar cells and perovskite-polymer hybrid solar cells. Group: Carbon nano materials organic solar cell (opv) materials. Alternative Names: C60-SAM. CAS No. 631918-72-4. Pack Sizes: 100 mg. Molecular formula: 897.84 g/mol. Mole weight: C70H11NO2. CN1CC23C4=C5C6=C7C4=C8C9=C4C% 10=C% 11C% 12=C% 13C% 10=C% 10C9=C7C7=C% 10C9=C% 10C% 14=C% 15C% 16=C% 17C (=C% 12C% 12=C% 17C% 17=C% 18C% 16=C% 16C% 15=C% 15C% 10=C7C6=C% 15C6=C% 16C7=C% 18C% 10=C (C2 (C1C1=CC=C (C=C1) C (=O) O) C7=C65) C1=C2C (=C4C8=C31) C% 11=C% 12C2=C% 17% 10) C% 14=C% 139. InChI= 1S / C70H11NO2 / c1-71-6-69-63-56-49-37-29-20-11-9-10- 12-15 (11) 24-31 (29) 39-40-32 (24) 30-21 (12) 23-19-14 (10) 17-16-13 (9) 18-22 (20) 35 (37) 43-41-27 (18) 25 (16) 33-34-26 (17) 28 (19) 42-44-36 (23) 38 (30) 50-52 (40) 61 (60 (63) 51 (39) 49) 65-58 (50) 55 (44) 59-48 (42) 46 (34) 53-45 (33) 47 (41) 57 (
5,6,11,12-Tetraphenylnaphthacene (purified by sublimation)
5,6,11,12-Tetraphenylnaphthacene (purified by sublimation). Group: other material building blockscarbon nano materials organic field effect transistor (ofet) materials organic light-emitting diode (oled) materials perovskite solar cell (psc) materials. CAS No. 517-51-1. Product ID: 5,6,11,12-tetraphenyltetracene. Molecular formula: 532.7g/mol. Mole weight: C42H28. C1=CC=C (C=C1) C2=C3C=CC=CC3=C (C4=C (C5=CC=CC=C5C (=C24) C6=CC=CC=C6) C7=CC=CC=C7) C8=CC=CC=C8. InChI=1S/C42H28/c1-5-17-29 (18-6-1) 37-33-25-13-14-26-34 (33) 39 (31-21-9-3-10-22-31) 42-40 (32-23-11-4-12-24-32) 36-28-16-15-27-35 (36) 38 (41 (37) 42) 30-19-7-2-8-20-30/h1-28H. YYMBJDOZVAITBP-UHFFFAOYSA-N.
5-Aminovaleric acid
97%. Uses: 5-aminovaleric acid (5-ava) is used:in the preparation of (5-ava)x(ma)1-xpbi3, a perovskite for fabricating printable mesoscopic perovskite solar cell.as a spacer in the synthesis of rhenium and technetium-99m labeled insulin.to synthesize dipeptides that self-assemble to form nanotubes in the solid state as well as in solution over a wide range of ph.as a starting material in the total synthesis of an alkaloid, lycoposerramine z. Additional or Alternative Names: 5-AVA, 5-Aminopentanoic acid, Homopiperidinic acid. Product Category: Heterocyclic Organic Compound. CAS No. 660-88-8. Molecular formula: C5H11NO2. Mole weight: 117.15 g/mol. Product ID: ACM660888-1. Alfa Chemistry ISO 9001:2015 Certified.
5-Aminovaleric Acid HydroBromide (Low water content)
5-Aminovaleric Acid HydroBromide (Low water content). Group: Perovskite solar cell (psc) materials. Alternative Names: 5-Aminopentanoic Acid HydroBromide (Low water content); Homopiperidinic Acid HydroBromide (Low water content); 5-AVABr (Low water content). CAS No. 2173111-73-2. Product ID: 5-aminopentanoic acid; hydrobromide. Molecular formula: 198.06 g/mol. Mole weight: C5H11NO2 HBr. C(CCN)CC(=O)O.Br. InChI=1S/C5H11NO2. BrH/c6-4-2-1-3-5(7)8; /h1-4, 6H2, (H, 7, 8); 1H. ZLNATNZPOLTKHA-UHFFFAOYSA-N. >98.0%(T).
5-Aminovaleric Acid HydroChloride (Low water content)
5-Aminovaleric Acid HydroChloride (Low water content). Group: Electronic materials perovskite solar cell (psc) materials. Alternative Names: 5-Aminopentanoic Acid HydroChloride (Low water content); Homopiperidinic Acid HydroChloride (Low water content); 5-AVACl (Low water content). CAS No. 627-95-2. Product ID: 5-aminopentanoic acid; hydrochloride. Molecular formula: 153.61 g/mol. Mole weight: C5H11NO2 HCl. C(CCN)CC(=O)O.Cl. InChI=1S/C5H11NO2. ClH/c6-4-2-1-3-5(7)8; /h1-4, 6H2, (H, 7, 8); 1H. BLOIUFYKQCCAGP-UHFFFAOYSA-N. >98.0%(T).
5-Aminovaleric Acid HydroIodide (Low water content)
5-Aminovaleric Acid HydroIodide (Low water content). Group: Electronic materials perovskite solar cell (psc) materials. Alternative Names: 5-Aminopentanoic Acid HydroIodide (Low water content); Homopiperidinic Acid HydroIodide (Low water content); 5-AVAI (Low water content). CAS No. 1705581-28-7. Product ID: 5-aminopentanoic acid; hydroiodide. Molecular formula: 245.06 g/mol. Mole weight: C5H11NO2 HI. C(CCN)CC(=O)O.I. InChI=1S/C5H11NO2. HI/c6-4-2-1-3-5(7)8; /h1-4, 6H2, (H, 7, 8); 1H. QRCPJIVRDACIKP-UHFFFAOYSA-N. >97.0%(T)(N).
9,9'-Spirobifluorene is a polyfluorene with carbon atoms of the methylene bridge connected to two fluorene molecules. It is mainly used in organic electronics due to its robust structure and two perpendicularly arranged π systems. Uses: 9,9'-spirobifluorene can be used in the synthesis of spirobifluorene based conjugated microporous polymers which can be potentially be used as a gas absorbent. it may be used as a hole transporting material which can be used in the fabrication of perovskite solar cells. Group: Organic light-emitting diode (oled) materials other electronic materials synthetic tools and reagents. Alternative Names: 9,9'-Spirobi[9H-fluorene]. CAS No. 159-66-0. Pack Sizes: Packaging 1 g in glass bottle. Product ID: 9,9'-spirobi[fluorene]. Molecular formula: 316.39. Mole weight: C25H16. c1ccc2c(c1)-c3ccccc3C24c5ccccc5-c6ccccc46. 1S/C25H16/c1-5-13-21-17 (9-1)18-10-2-6-14-22 (18)25 (21)23-15-7-3-11-19 (23)20-12-4-8-16-24 (20)25/h1-16H. SNFCXVRWFNAHQX-UHFFFAOYSA-N. 0.97.
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