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Fullerene C60(Purity: 99.5wt%). Uses: Designed for use in research and industrial production. Product Category: Fullerene With High Quality. CAS No. 131159-39-2. Purity: 99.5wt%. Product ID: ACM131159392-14. Alfa Chemistry ISO 9001:2015 Certified.
Fullerene C60(Purity: 99.95wt%)
Fullerene C60(Purity: 99.95wt%). Uses: Designed for use in research and industrial production. Product Category: Fullerene With High Quality. CAS No. 131159-39-2. Purity: 99.95wt%. Product ID: ACM131159392-21. Alfa Chemistry ISO 9001:2015 Certified.
Fullerene C60(Purity: 99.9wt%)
Fullerene C60(Purity: 99.9wt%). Uses: Designed for use in research and industrial production. Product Category: Fullerene With High Quality. CAS No. 131159-39-2. Purity: 99.9wt%. Product ID: ACM131159392-9. Alfa Chemistry ISO 9001:2015 Certified.
2a-Phenyl-1,2(2a)-Homo[5,6]fullerene-C60-Ih-2a-butanoic Acid Stereoisomer is functionalized Fullerene that is carbon based nanomaterial which is electrophilic in nature. Fullerenes are used in some photovoltaic devices. Also have biomedical applications such as potential MRI and X-ray imaging contrast agents, drugs and genes delively agents, and photodynamic therapy agents. Group: Biochemicals. Grades: Highly Purified. CAS No. 161196-25-4. Pack Sizes: 10mg, 25mg. Molecular Formula: C71H12O2, Molecular Weight: 896.85. US Biological Life Sciences.
Worldwide
56,60:2,3][5,6]Fullerene-c60-ih
56,60:2,3][5,6]Fullerene-c60-ih. Uses: Designed for use in research and industrial production. Additional or Alternative Names: 1,1,4,4-Tetrahydrodi[1,4]methanonaphthaleno[1,2:2,3;56,60:2,3][5,6]fullerene-C60-Ih;C60 derivative,indene-C60 bisadduct;ICBA;1,1,4,4-Tetrahydrodi[1,4]methanonaphthaleno[1,2:2,3:56,60:2,3][5,6]fullerene-C60-Ih;1,1,4,4-Tetrahydro-di[1,4]methanonaphtha. Product Category: Organic & Printed Electronics. CAS No. 1207461-57-1. Molecular formula: C78H16. Mole weight: 952.96164;g/mol. Purity: 0.96. Canonical SMILES: C1C2C3=CC=CC=C3C1C45C26C7=C8C9=C1C2=C3C8=C8C6=C6C4=C4C%10=C%11C%12=C%13C%14=C%15C%16=C%17C(=C1C1=C2C2=C%18C%19=C%20C2=C3C8=C2C%20=C(C%10=C26)C2=C%11C3=C%13C%15=C6C%17=C1C%181C6(C3=C2%19)C2CC1C1=CC=CC=C21)C1=C%16C2=C%14C(=C%124)C5=C2C7=C19. Product ID: ACM1207461571. Alfa Chemistry ISO 9001:2015 Certified.
C60 Fullerene
C60 Fullerene. Group: Multi wall cnt. CAS No. 99685-96-8. Molecular formula: 720.64 g/mol. Mole weight: C60. >99.5%.
Fullerene-C60
Buckyballs are also known as C60 molecules, Fullerenes, or Buckminsterfullerene. Buckyballs are molecules made up of 60 carbon atoms arranged in a series of interlocking hexagons and pentagons, forming a structure that looks similar to a soccer ball. C60 is actually a "truncated icosahedron", consisting of 12 pentagons and 20 hexagons. Uses: C60 has a broad range of applications which include catalysis, optical materials, polymer modification, solar cells, fuel cells, lubricants, cosmetics, and biomedical applications. Group: other nano materials. Alternative Names: Buckminsterfullerene. CAS No. 99685-96-8. Product ID: (C\{60}-I\{h})[5,6] fullerene. Molecular formula: 720.64. Mole weight: C60. c12c3c4c5c1c6c7c8c2c9c% 10c3c% 11c% 12c4c% 13c% 14c5c% 15c6c% 16c7c% 17c% 18c8c9c% 19c% 20c% 10c% 11c% 21c% 22c% 12c% 13c% 23c% 24c% 14c% 15c% 25c% 16c% 26c% 17c% 27c% 18c% 19c% 28c% 20c% 21c% 29c% 22c% 23c% 30c% 24c% 25c% 26c% 31c% 27c% 28c% 29c% 30% 31. 0.995.
Fullerene-C60
Buckyballs are also known as C60 molecules, Fullerenes, or Buckminsterfullerene. Buckyballs are molecules made up of 60 carbon atoms arranged in a series of interlocking hexagons and pentagons, forming a structure that looks similar to a soccer ball. C60 is actually a "truncated icosahedron", consisting of 12 pentagons and 20 hexagons. Uses: C60 has a broad range of applications which include catalysis, optical materials, polymer modification, solar cells, fuel cells, lubricants, cosmetics, and biomedical applications. Group: Supercapacitorscarbon nano materials organic field effect transistor (ofet) materials organic solar cell (opv) materials sublimed materials. Alternative Names: Buckminsterfullerene. CAS No. 99685-96-8. Pack Sizes: 1g, 5g. Product ID: (C\{60}-I\{h})[5,6] fullerene. Molecular formula: 720.64. Mole weight: C60. c12c3c4c5c1c6c7c8c2c9c% 10c3c% 11c% 12c4c% 13c% 14c5c% 15c6c% 16c7c% 17c% 18c8c9c% 19c% 20c% 10c% 11c% 21c% 22c% 12c% 13c% 23c% 24c% 14c% 15c% 25c% 16c% 26c% 17c% 27c% 18c% 19c% 28c% 20c% 21c% 29c% 22c% 23c% 30c% 24c% 25c% 26c% 31c% 27c% 28c% 29c% 30% 31. 1S/C60/c1-2-5-6-3 (1)8-12-10-4 (1)9-11-7 (2)17-21-13 (5)23-24-14 (6)22-18 (8)28-20 (12)30-26-16 (10)15 (9)25-29-19 (11)27 (17)37-41-31 (21)33 (23)43-44-34 (24)32 (22)42-38 (28)48-40 (30)46-36 (26)35 (25)45-39 (29)47 (37)55-49 (41)51 (43)57-52 (44)50 (42)56 (48)59-54 (46)53 (45)58 (55)60 (57)59. XMWRBQBLMFGWIX-UHFFFAOYSA-N. 0.995.
Fullerene-C60
Fullerene-C60, a representative of carbon nanocompounds, is suggested to be promising agent for application in photodynamic research due to its unique physicochemical properties. Fullerene-C60 probes the intramolecular dynamics of its electron and energy transfer [1]. Uses: Scientific research. Group: Signaling pathways. CAS No. 99685-96-8. Pack Sizes: 5 mg; 10 mg; 25 mg; 50 mg; 100 mg. Product ID: HY-W020768.
4-(1,3-Dimethyl-2,3-dihydro-1H-benzoimidazol-2-yl)-N,N-diphenylaniline. Uses: Used as an n-type dopant for c60 fullerene which is an n-type semiconductor in oled and pled. used as an air-stable n-type dopant in solution processed n-channel organic thin film transistors (otfts). Group: Organic field effect transistor (ofet) materials. Pack Sizes: 1 g in glass bottle. Molecular formula: 391.51. CN1C (N (C)c2ccccc12)c3ccc (cc3)N (c4ccccc4)c5ccccc5. 1S/C27H25N3/c1-28-25-15-9-10-16-26 (25) 29 (2) 27 (28) 21-17-19-24 (20-18-21) 30 (22-11-5-3-6-12-22) 23-13-7-4-8-14-23/h3-20, 27H, 1-2H3, YUDZJTFIRBVGFN-UHFFFAOYSA-N. YUDZJTFIRBVGFN-UHFFFAOYSA-N.
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 (
(6,6)-Pentadeuterophenyl c61 butyric ac&
(6,6)-Pentadeuterophenyl c61 butyric ac&. Uses: Designed for use in research and industrial production. Additional or Alternative Names: (6,6)-PENTADEUTEROPHENYL C61 BUTYRIC AC&;[6,6]-PentadeuterophenylC61butyricacidmethylester;d5-PCBM,1-[3-(Methoxycarbonyl)propyl]-1-pentadeuterophenyl-[6.6]C61,3μ-(Phenyl-d5)3μH-cyclopropyl[1,9][5,6]fullerene-C60-Ih-3μ-butanoicacidmethylester;1-[3-(Methoxy. Product Category: Nanoparticles & Nanopowders. CAS No. 749898-80-4. Molecular formula: C72H9D5O2. Mole weight: 915.931. Purity: 0.96. IUPACName: (6,6)-PENTADEUTEROPHENYL C61 BUTYRIC AC&. Canonical SMILES: COC(=O)CCCC1(C23C14C5=C6C7=C8C9=C1C%10=C%11C%12=C%13C%14=C%10C%10=C1C1=C%15C%16=C%17C%18=C%19C%20=C%21C%22=C%23C%24=C%25C%26=C(C7=C9C%11=C%26C%12=C%24C%22=C%13C%20=C%14C%18=C%10%16)C7=C%25C9=C(C4=C76)C4=C2C(=C%17C3=C%15C5=C81)C%19=C%21C4=C%239)C1=CC=CC=C1. Product ID: ACM749898804. Alfa Chemistry ISO 9001:2015 Certified.
[6,6]-Phenyl C61 butyric acid methyl ester
>99.5%. Uses: [60]pcbm is an n-type semi-conductor with low cost and high surface area. it is widely used as an electron transport material in various energy-based applications like organic photovoltaics, perovskite solar cells, field effect transistors, and photodetectors.(60)pcbm is an n-type semi-conductor widely used as an a electron transport material with low cost and high surface area in different energy. Group: 3d printing materials carbon nano materials organic field effect transistor (ofet) materials organic solar cell (opv) materials. Alternative Names: [60]PCBM, 1-[3-(Methoxycarbonyl)propyl]-1-phenyl-[6.6]C61, PCBM, 3'H-Cyclopropa[1,9] [5,6]fullerene-C60-Ih-3'-butanoic acid 3'-phenyl methyl ester. CAS No. 160848-22-6. Pack Sizes: 100 mg/500 mg. Molecular formula: 910.88 g/mol. Mole weight: C72H14O2. COC (=O) CCCC2 (c1ccccc1) [C]3=4c5c6c7c8c9c% 10c (c% 11c% 12c3c% 13c5c% 14c% 15c6c% 16c7c% 17c9c% 18c% 19c% 10c% 20c% 11c% 21c% 12c% 22c% 13c% 23c% 14c% 24c% 15c% 25c% 16c% 26c% 17c% 18c% 27c% 28c% 19c% 20c% 29c% 21c% 30c% 22c% 23c% 31c% 24c% 32c% 25c% 26c% 27c% 33c% 28c% 29c% 30c% 31c% 32% 33) [C]2=48. InChI=1S/C72H14O2/c1-74-11 (73) 8-5-9-70 (10-6-3-2-4-7-10) 71-66-59-52-40-32-23-14-12-13-15-18 (14) 27-34 (32) 42-43-35 (27) 33-24 (15) 26-22-17 (13) 20-19-16 (12) 21-25 (23) 38 (40) 46-44-30 (21) 28 (19) 36-37-29 (20) 31 (22) 45-47-39 (26) 41 (33) 53-55 (43) 64 (63 (66) 54 (42) 52) 67-60
Fullerene (C60) Nanotubes, Single-Walled and Multi-Walled - also known as Buckytubes or Buckyball Nanotubes, are nano scale cylindrical tubes of graphitic carbon with numerous applications as the stiffest and strongest known fibers and because of their unique electrical properties. They are available in single walled, double walled and multi-walled forms, bundled and unbundled, with tube lengths from 5 to 30 nanometers (nm) and specific surface area (SSA) in the 50 to 500 m2/g range. Fullerene Nanotubes are available in ultra high purity and high purity and coated suspended and dispersed forms. They are also available as a nanofluid through the AE Nanofluid production group. Nanofluids are generally defined as suspended nanoparticles in solution either using surfactant or surface charge technology. Nanofluid dispersion and coating selection technical guidance is also available. Other nanostructures include nanorods, nanowhiskers, nanohorns, nanopyramids and other nanocomposites. Surface functionalized nanoparticles allow for the particles to be preferentially adsorbed at the surface interface using chemically bound polymers. Group: Nanotubes. Alternative Names: Buckeytubes, Buckyballnanotubes, c60nanotubes. CAS No. 99685-96-8. Product ID: (C\{60}-I\{h})[5,6] fullerene. Molecular formula: 720.64. Mole weight: C60. C12= C3C4= C5C6= C1C7= C8C9= C1C% 10= C% 11C (= C29) C3= C2C3= C4C4= C5C5= C9C6= C7C6= C7C8=
Fullerene Nanotubes, Single-Walled
Fullerene (C60) Nanotubes, Single-Walled and Multi-Walled - also known as Buckytubes or Buckyball Nanotubes, are nano scale cylindrical tubes of graphitic carbon with numerous applications as the stiffest and strongest known fibers and because of their unique electrical properties. They are available in single walled, double walled and multi-walled forms, bundled and unbundled, with tube lengths from 5 to 30 nanometers (nm) and specific surface area (SSA) in the 50 to 500 m2/g range. Fullerene Nanotubes are available in ultra high purity and high purity and coated suspended and dispersed forms. They are also available as a nanofluid through the AE Nanofluid production group. Nanofluids are generally defined as suspended nanoparticles in solution either using surfactant or surface charge technology. Nanofluid dispersion and coating selection technical guidance is also available. Other nanostructures include nanorods, nanowhiskers, nanohorns, nanopyramids and other nanocomposites. Surface functionalized nanoparticles allow for the particles to be preferentially adsorbed at the surface interface using chemically bound polymers. Group: Nanotubes. Alternative Names: Buckeytubes, Buckyballnanotubes, c60nanotubes. CAS No. 99685-96-8. Product ID: (C\{60}-I\{h})[5,6] fullerene. Molecular formula: 720.64. Mole weight: C60. C12= C3C4= C5C6= C1C7= C8C9= C1C% 10= C% 11C (= C29) C3= C2C3= C4C4= C5C5= C9C6= C7C6= C7C8
Fullerene powder
Fullerene powder. Group: Fullerene. Alternative Names: Buckminsterfullerene, C60. CAS No. 99685-96-8. 99.9+% C{60}.
Fullerene Powder
Fullerene Powder is available in several forms including sublimed, mixed, mixed refined, hydroxylated and mixed hydrogenated. Fullerenes are also known by the names Buckminsterfullerene and Fullerite. Fullerene Powder is generally immediately available in most volumes. Group: Carbon compounds. Alternative Names: Buckyballs; Buckminsterfullerene; (C60-Ih)[5,6]Fullerene; [60]fullerene; C6-; Fullerenepowder; Footballene. CAS No. 115383-22-7. Product ID: (C\{70}-D \{5h(6)}) fullerene. Molecular formula: 840.74900000000002. Mole weight: C70. C12=C3C4=C5C6=C7C8=C9C% 10=C% 11C% 12=C% 13C% 10=C% 10C8=C5C1=C% 10C1=C% 13C5=C8C1=C2C1=C3C2=C3C% 10=C% 13C% 14=C3C1=C8C1=C3C5=C% 12C5=C8C% 11=C% 11C9=C7C7=C9C6=C4C2=C2C% 10=C4C (=C29) C2=C6C (=C8C8=C9C6=C4C% 13=C9C (=C% 141) C3=C85) C% 11=C27. InChI= 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 (. ATLMFJTZZPOKLC-UHFFFAOYSA-N. 99% | 99.9% | 99.99% | 99.999%.
Fullerene Powder
Fullerene Powder is available in several forms including sublimed, mixed, mixed refined, hydroxylated and mixed hydrogenated. Fullerenes are also known by the names Buckminsterfullerene and Fullerite. Fullerene Powder is generally immediately available in most volumes. Group: other nano materials. Alternative Names: Buckyballs; Buckminsterfullerene; (C60-Ih)[5,6]Fullerene; [60]fullerene; C6-; Fullerenepowder; Footballene. CAS No. 115383-22-7. Product ID: (C\{70}-D \{5h(6)}) fullerene. Molecular formula: 840.74900000000002. Mole weight: C70. C12=C3C4=C5C6=C7C8=C9C% 10=C% 11C% 12=C% 13C% 10=C% 10C8=C5C1=C% 10C1=C% 13C5=C8C1=C2C1=C3C2=C3C% 10=C% 13C% 14=C3C1=C8C1=C3C5=C% 12C5=C8C% 11=C% 11C9=C7C7=C9C6=C4C2=C2C% 10=C4C (=C29) C2=C6C (=C8C8=C9C6=C4C% 13=C9C (=C% 141) C3=C85) C% 11=C27. 99% | 99.9% | 99.99% | 99.999%.
Fullerene Soot is a fine powder composed of a mix of C60 and C70 fullerenes in a ration of roughly 22% C60 to 76% C70. Fullerene Soot is generally immediately available in most volumes. Uses: Fullerene soot is a carbonaceous material that can be used in a variety of sustainable applications such as double-layer capacitor (dlc), water purification, hydrogen storage, supercapacitor, and nanoelectronics. fullerene soot is a low cost nanomaterial that finds applications in superconductors, photoconductors and semiconductor based industries. Group: other nano materials. Product ID: carbon. Molecular formula: 912.81. Mole weight: C60 / C70. [C]. 99% | 99.9% | 99.99% | 99.999%.
Fullerene Soot
Fullerene Soot is a fine powder composed of a mix of C60 and C70 fullerenes in a ration of roughly 22% C60 to 76% C70. Fullerene Soot is generally immediately available in most volumes. Uses: Fullerene soot is a carbonaceous material that can be used in a variety of sustainable applications such as double-layer capacitor (dlc), water purification, hydrogen storage, supercapacitor, and nanoelectronics. fullerene soot is a low cost nanomaterial that finds applications in superconductors, photoconductors and semiconductor based industries. Group: Supercapacitorscarbon nano materials. Pack Sizes: 5 g in poly bottle. Product ID: carbon. Molecular formula: 912.81. Mole weight: C60 / C70. [C]. 1S/C. OKTJSMMVPCPJKN-UHFFFAOYSA-N. 99% | 99.9% | 99.99% | 99.999%.
ICBA
ICBA is a C60 derivative that can be synthesized from C60 and indene. It is an acceptor material with shallow lowest occupied molecular orbital(LUMO) which can be used to enhance the performance of polymeric solar cells(PSCs). Uses: Icba can be used with poly(3-hexylthiophene)(p3ht) as an active layer which can be used in the fabrication of organic solar cells(oscs).icba in combination with thiazolo-thiazolo can be used as a donor. it can be blended with pcbm for photovoltaic based application. Group: 3d printing materials carbon nano materials dye-sensitized solar cell (dssc) materials electronic materials organic field effect transistor (ofet) materials organic solar cell (opv) materials. Alternative Names: 1', 1'', 4', 4''-Tetrahydro-di[1, 4]methanonaphthaleno[1, 2:2', 3', 56, 60:2'', 3''][5, 6]fullerene-C60, C60 derivative, indene-C60 bisadduct. CAS No. 1207461-57-1. Pack Sizes: 250 mg in glass insert. Molecular formula: 952.99. Mole weight: C78H16. C1C2C3= CC= CC= C3C1C45C26C7= C8C9= C1C2= C3C% 10= C9C9= C% 11C% 12= C% 10C% 10= C% 13C% 14= C% 12C% 12= C% 15C% 16= C (C4= C4C% 17= C% 16C% 16= C% 18C% 19= C% 17C% 17= C% 20C% 21= C% 19C% 19= C% 22C% 23= C% 21C% 21= C (C1= C7C (= C% 21% 20) C6= C% 174) C2= C% 23C (= C3% 10) C% 221C% 13 (C2CC1C1= CC= CC= C21) C (= C% 18% 19) C% 14= C% 15% 16) C (= C% 12% 11) C5= C98. InChI=1S/C78H16/c1-2-6-12-11 (5-1) 15-9-16 (12) 76-69-53-37-23-25-41-29 (37) 30-38-24-26-42 (30) 58-57 (41) 73-65-49 (
ICMA
Dipole moment of indene-C60 monoadduct (ICMA) was estimated to be 2.34 debye. Film formation of ICMA under optimum conditions was studied.1 As a potential candidate for field effect transistors (FETs), ICMA exhibits unipolar n-channel characteristics and high electron mobility. Group: 3d printing materials carbon nano materials organic field effect transistor (ofet) materials organic solar cell (opv) materials. Alternative Names: 1',4'-Dihydro-naphtho[2',3':1,2][5,6]fullerene-C60,C60 derivative, indene-C60 monoadduct. CAS No. 186682-36-0. Pack Sizes: 250 mg in glass insert. Molecular formula: 836.8.
N-ethyl-polyamino-C60(Purity: 98-99.5%). Uses: Designed for use in research and industrial production. Product Category: Fullerene With High Quality. CAS No. 131159-39-2. Purity: 98-99.5%. Product ID: ACM131159392-13. Alfa Chemistry ISO 9001:2015 Certified.
N-Methylfulleropyrrolidine
N-Methylfulleropyrrolidine is an acceptor molecule with a fullerene core, and a nitrogen free lone pair that is located at the pyrrolidine ring. It can be used as an intermediate in the synthesis of other functionalized fullerenes. It can be also used in the development of opto-electronic devices. Photoinduced energy and electron transfer between oligothienylenevinylenes and N-methylfulleropyrrolidine (MP-C60) has been studied in details. MP-C60 acts as an electron acceptor. Uses: Soluble functionalized fullerene. acts as electron acceptor in mixtures or when linked to π-conjugated molecules and polymers. used as spectroscopic and redox reference for c60-based molecular heterojunctions. Group: Carbon nano materials. Alternative Names: N-METHYLFULLEROPYRROLIDINE; MFP,MPC60,NMPC60; MPC60; NMPC60; N-Methylfulleropyrrolidine 99% (HPLC). CAS No. 151872-44-5. Pack Sizes: 100 mg in glass insert. Product ID: N-METHYLFULLEROPYRROLIDINE. Molecular formula: 777.755. Mole weight: C63H7N. CN1CC23C4=C5C6=C7C4=C8C9=C4C% 10=C% 11C% 12=C% 13C% 10=C% 10C9=C7C7=C9C6=C6C% 14=C9C9=C% 15C (=C% 13C9=C% 107) C7=C% 12C9=C% 10C7=C7C% 15=C% 14C% 12=C7C7=C% 10C% 10=C% 13C9=C% 11C9=C4C8=C2C (=C% 139) C2=C% 10C7=C4C% 12=C6C5=C4C32C1. BYIDVSOOZTZTQB-UHFFFAOYSA-N. 96%.
PCBM
PCBM. Uses: Designed for use in research and industrial production. Additional or Alternative Names: (6,6)-PHENYLC61BUTYRICACIDMETHYLESTER,>99%;(6,6)-PHENYLC61BUTYRICACIDMETHYLES&;Methyl[6.6]-Phenyl-C61-butyrate;[6,6]PCBM;[60]PCBM;3-Phenyl-3H-cyclopropa[1,9][5,6]fullerene-C60-Ih-3-butanoicacidmethylester;(6,6)-Phenyl-C61butyrieacidmethy. Product Category: Organic Photovoltaic (OPV). CAS No. 160848-22-6. Molecular formula: C72H14O2. Mole weight: 910.88. Purity: 95%+. Density: 2.50 g/ml. Product ID: ACM160848226-11. Alfa Chemistry ISO 9001:2015 Certified.
Small gap fullerene-ethyl nipecotate are higher order fullerenes with low HOMO-LUMO gaps. These allotropes of carbon are also known as metallofullerenes. They are kinetically unstable and are considered as insoluble small band gap structures. Uses: Small gap fullerene-ethyl nipecotate are higher order fullerenes with low homo-lumo gaps. these allotropes of carbon are also known as metallofullerenes. they are kinetically unstable and are considered as insoluble small band gap structures. small gap fullerene-ethyl nipecotate can be extracted into organic solvents by a chemical redox processes. Group: Supercapacitorscarbon nano materials organic solar cell (opv) materials. Pack Sizes: 250 mg in glass insert. Molecular formula: 912.81. Mole weight: Linear Formula C60(C8H15NO2)x. 1S/C. OKTJSMMVPCPJKN-UHFFFAOYSA-N. ≥95%.
Small gap fullerenes
Insoluble small gap fullerenes can be extracted into organic solvents by simple chemical redox process. Uses: Small gap fullerenes can be used as doping agents on polyaniline (pani) for organic electronics applications. Group: Supercapacitorscarbon nano materials organic solar cell (opv) materials. Pack Sizes: 1 g in glass bottle. Molecular formula: 912.81. Mole weight: Linear Formula C60(C8H15NO2)x. C=1=C2c3c4C=1c5c6c7c8c9c% 10c% 11c% 12c% 13C% 14=[C]% 10=C% 15c% 16c% 17c% 14c% 18c% 13c% 19c% 20c% 12c% 21c% 11c (c% 22c% 23c% 24c (C2=[C]7% 15% 22) c% 25c3c% 26c% 27c4c% 28c5c (c6% 16) c% 29c% 17c% 30c% 18c% 31c% 19c% 32c% 20c (c% 21% 23) c% 33c% 24c% 34c% 25c% 26c% 35c% 36c% 27c% 28c% 29c% 37c% 30c% 31c% 38c% 32c% 33c% 34c% 35c% 38c% 36% 37) c89. 1S/C. OKTJSMMVPCPJKN-UHFFFAOYSA-N.
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