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Detail of "41044-12-6"

  • MSDS Download
  • CAS Number:
  • 41044-12-6
  • Name:
  • 2H-1-Benzopyran-2-one,7-(diethylamino)-3-(1-methyl-1H-benzimidazol-2-yl)-

  • Superlist Name:
  • Coumarin 30
  • Molecular Structure:
  • Formula:
  • C21H21 N3 O2
  • Molecular Weight:
  • 347.41
  • Deleted CAS:
  • 76363-49-0
  • Synonyms:
  • Coumarin,7-(diethylamino)-3-(1-methyl-2-benzimidazolyl)- (6CI,7CI);3-(1-Methylbenzimidazol-2-yl)-7-diethylamino-2H-benzopyran-2-one;3-(2'-N-Methylbenzimidazole)-7-(N,N-diethylamino)coumarin;7-(Diethylamino)-3-(1-methyl-1H-benzimidazol-2-yl)-2-benzopyrone;7-(Diethylamino)-3-(1-methyl-2-benzimidazolyl)coumarin;Coumarin 30;Coumarin 515;K 30;NSC 290433;
  • EINECS:
  • 255-186-8
  • Density:
  • 1.22g/cm3
  • Melting Point:
  • 225-229 ºC
  • Boiling Point:
  • 588°Cat760mmHg
  • Flash Point:
  • 309.4°C
  • Hazard Symbols:
  • Risk Codes:
  • R20/21/22;R36/37/38   
  • Safety:
  • S26;S37/39 Details

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CAS No.41044-12-6 Coumarin 30

Assay:>95%

delivary of date:50 days

Min. Order:1Kilogram RMB:100000-200000 /Kilogram

Supplier:shanghai hongjing biotechnology co.ltd [ China (Mainland)]

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CAS No.41044-12-6 Coumarin 30

Coumarin 30

Supplier:Synthon Chemicals GmbH & Co. KG [ Germany]

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Tel:+49 3494 636983

Address:Chemiepark Bitterfeld-Wolfen, Areal A, Werkstattstrasse 10

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CAS No.41044-12-6 Coumarin 30

cas 41044-12-6

Supplier:Beijing FLY Science & Tech. Co.; Ltd [ China (Mainland)]

114Integral
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Tel:+86-10-84937025

Address:Rm1205/D,Kinglong International Plaza No.9 Fulin Road Chaoyang District Beijing 100107 China

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Reference

Photopolymerizable composition
Photopolymerizable composition. Ishikawa, Shunichi (Fuji Photo Film Co., Ltd., Japan). Jpn. Kokai Tokkyo Koho JP 61097650 A2 16 May 1986 Showa, 13 pp. (Japan) CODEN: JKXXAF. CLASS: ICM: G03C001-68. ICS: C08F002-48; G03C001-00. APPLICATION: JP 84-219046 18 Oct 1984. DOCUMENT TYPE: Patent CA Section: 74 (Radiation Chemistry, Photochemistry, and Photographic and Other Reprographic Processes) A photopolymerizable compn. consisting of a photopolymerizable compd. with an ethylenic unsatd. group and a photopolymn. initiator uses as the initiator the combination of 31 3-substituted coumarin and 31 compd. of the formula I (R = alkyl, aryl; R1 = R, heterocyclic group; R2 = H, R; R3 = R2, CN, halo, alkoxy, alkoxycarbonyl; R4, R5, R6, R7 = R2, halo, alkoxy; R4 and R5 or R6 and R7 may be combined to form a benzene ring). It has high photosensitivity, esp. to visible light. Thus, a soln. consisting of 40 g pentaerythritol, 2 g compd. II, 2 g 3-substituted coumarin III, 60 g benzyl methacrylate-methacrylic acid (73/27) copolymer, 1 g tri-Ph phosphate, 400 mL Me Et ketone, and 300 mL Me Cellosolve acetate was coated on an anodized Al plate to obtain a printing plate-making material.In this experiment, several chemicals are used like 105683-20-3 Following an exposure to 400 nm light, the plate was treated with an alk. soln. to show a good development speed. .
Improvement in the reduction of silver ions in aqueous solution using two-photon sensitive dye
All Rights Reserved. Improvement in the reduction of silver ions in aqueous solution using two-photon sensitive dye. Ishikawa, Atsushi; Tanaka, Takuo; Kawata, Satoshi (Nanophotonics Laboratory, The Institute of Physical and Chemical Research (RIKEN) 2-1 Hirosawa, Wako, Saitama 351-0198, Japan). Applied Physics Letters, 89(11), 113102/1-113102/3 (English) 2006 American Institute of Physics. CODEN: APPLAB. ISSN: 0003-6951.Several reagents with their cas registry numbers 7440-22-4 and 41044-12-6 are used here. DOCUMENT TYPE: Journal CA Section: 74 (Radiation Chemistry, Photochemistry, and Photographic and Other Reprographic Processes) Section cross-reference(s): 76 The redn. properties of silver ions in aq. soln. were improved with a two-photon sensitive dye. Excitation of the dye through a two-photon absorption process allowed a low laser power to trigger the redn. of silver ions, and sub-diffraction-limit fabrication was realized. An elec. conductive silver wire with a min. width of 400 nm was achieved. The authors also demonstrated the fabrication of self-standing three-dimensional silver microstructures with arbitrary shapes on a glass substrate. .
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