1-Hydroxy-2-methoxyanthraquinone

CAS 6003-11-8 MFCD00984969

化学结构图

6003-11-8
SMILES: COc1ccc2c(c1O)C(=O)c1ccccc1C2=O

化学属性

Mol. FormulaC15H10O4
Mol. Weight254.24

别名和识别编码

Chemical Name1-Hydroxy-2-methoxyanthraquinone
Synonym
InChIKeyBYQWRZGQEZAOPQ-UHFFFAOYSA-N
PubChem Substance ID80103
InChIInChI=1S/C15H10O4/c1-19-11-7-6-10-12(15(11)18)14(17)9-5-3-2-4-8(9)13(10)16/h2-7,18H,1H3
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分类

  • {uni_hamburg} no charge; carbocycle; aromatic; large ring; fused rings; 6ring; 10ring; 14ring; ketone; alcohol; ether; 1fragment

相关文献及参考

  • Short: III/35C3 Title: Nuclear Magnetic Resonance (NMR) Data: Chemical Shifts and Coupling Constants for Hydrogen-1, Part 3: Natural Compounds Author: Gupta, R.R.; Dobhal, M.P. Editor: Gupta, R.R.; Lechner, M.D. Source: Landolt-Börnstein, New Series Volume: III/35C3 Year: 2003 Keyword: chemical shift; coupling constant; molecular structure ISBN: 3-540-41058-9 ISBN: 978-3-540-41058-4 Internet Resource: DOI:10.1007/b76569 RefComment: VIII, 322 pages. With CD-ROM. Hardcover Abstract: This volume provides a comprehensive and evaluated compilation of nuclear magnetic resonance data. Chemical shifts and coupling constants of boron-11 and phosphorus-31 (subvol. A), fluorine-19 and nitrogen-15 (subvol. B), hydrogen-1 (subvol. C), and carbon-13 (subvol. D) compounds are tabulated together with the gross- and structure formulas and the most readily available solvents. Due to the large amount of the data merely chemical shifts are presented in the printed versions, and all the data, chemical shifts and coupling constants are provided on CD-ROM's.
  • Short: III/35D2 Title: Nuclear Magnetic Resonance (NMR) Data: Chemical Shifts for Carbon-13, Part 2: Aromatic Compounds Author: Mikhova, B. Editor: Gupta, R.R.; Lechner, M.D. Source: Landolt-Börnstein, New Series Volume: III/35D2 Year: 2005 Keyword: aromatic compounds; carbon-13; chemical shift; coupling constant; molecular structure ISBN: 978-3-540-20189-2 ISBN: 3-540-20189-0 Internet Resource: DOI:10.1007/b83345 RefComment: VIII, 291 p., Hardcover RefComment: Written for Science and engineers in the fields of physics, chemistry and physical chemistry who inted to use NMR to study the structure and the binding of molecules Abstract: Nuclear Magnetic Resonance (NMR) is based on the fact that certain nuclei exhibit a magnetic moment, orient by a magnetic field, and absorb characteristic frequencies in the radiofrequency part of the spectrum. The spectral lines of the nuclei are highly influenced by th

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