Tyrian Purple: 6,6’-Dibromoindigo and Related Compounds
暂无分享,去创建一个
[1] K. Benkendorff,et al. Indole Derivatives from the Egg Masses of Muricid Molluscs , 2001, Molecules : A Journal of Synthetic Chemistry and Natural Product Chemistry.
[2] G. Voss,et al. Selectively C‐Deuterated Indigotins , 2000 .
[3] Philip John,et al. Indigo-reducing Clostridium isatidis Isolated from a Variety of Sources, including a 10th-Century Viking Dye Vat , 2000 .
[4] E. A. Chávez,et al. Population parameters and dye yield of the purple snail Plicopurpura pansa (Gould, 1853) of west central Mexico , 2000 .
[5] G. Voss. The analysis of indigoid dyes as leuco forms by NMR spectroscopy , 2000 .
[6] M. Collins,et al. An indigo-reducing moderate thermophile from a woad vat, Clostridium isatidis sp. nov. , 1999, International journal of systematic bacteriology.
[7] A. Romani,et al. A spectrophotometric and fluorimetric study of some anthraquinoid and indigoid colorants used in artistic paintings , 1998 .
[8] M. Collins,et al. Clostridium used in mediaeval dyeing , 1998, Nature.
[9] B. Roos,et al. A Theoretical Study of the Indigoid Dyes and Their Chromophore , 1997 .
[10] F Guarnieri,et al. Maya Blue Paint: An Ancient Nanostructured Material , 1996, Science.
[11] B. Schrader,et al. Near‐infrared fourier transform Raman spectroscopy of indigoids , 1995 .
[12] K. Seddon,et al. Letter: The in Situ Identification of Indigo on Ancient Papers , 1995 .
[13] G. Cass,et al. Fading of colorants by atmospheric pollutants: mass spectrometry studies , 1994 .
[14] H. Gerlach,et al. Regioselektiver Brom/Lithium‐Austausch bei 2,5‐Dibrom‐1‐nitrobenzol. – Eine einfache Synthese von 4‐Brom‐2‐nitrobenzaldehyd und 6,6′‐Dibromindigo , 1989 .
[15] H. A. Sancovich,et al. The isolation and identification of indigoid pigments from urine. , 1988, Clinica chimica acta; international journal of clinical chemistry.
[16] R. Michel,et al. Royal Purple Dye: Tracing Chemical Origins of the Industry , 1985 .
[17] Y. Fujise,et al. STRUCTURE OF TYRIVERDIN, THE IMMEDIATE PRECURSOR OF TYRIAN PURPLE , 1980 .
[18] C. Krampe,et al. 6,6′-DIBROMO-INDIGO, A MAIN COMPONENT OF TYRIAN PURPLE. ITS CRYSTAL STRUCTURE AND LIGHT ABSORPTION , 1979 .
[19] T. Tsuji,et al. REINVESTIGATION ON THE CIDNP IN THE THERMOLYSIS OF DISPIRO[2.2.2.2]DECA-4,9-DIENE , 1977 .
[20] C. Duke,et al. The chemistry of the indoleninones. III. Reactions of 2-(Methylthio)indoleninones with diazomethane , 1976 .
[21] C. Duke,et al. Isolation of choline and choline ester salts of tyrindoxyl sulphate from the marine molluscs and , 1976 .
[22] H. Fouquet,et al. Biological Precursors and Genesis of Tyrian‐Purple , 1971 .
[23] H. Bielig,et al. Biologische Vorstufen und Genese von antikem Purpur , 1971 .
[24] L. Masschelein-Kleiner,et al. Étude et Identification du ‘Bleu Maya’ , 1967 .
[25] T. Kappe,et al. A New Synthesis of Indigo , 1964, Nature.
[26] W. Lüttke,et al. Theoretische und spektroskopische Untersuchungen an Indigofarbstoffen, I. Infrarot‐ und Lichtabsorptionsspektren einfacher Indigofarbstoffe , 1964 .
[27] M. Klessinger. Theoretische und spektroskopische untersuchungen an indigo-farbstoffen — II , 1963 .
[28] W. Lüttke,et al. Theoretische und spektroskopische untersuchungen an indigo-farbstoffen — II: Das chromophore system der Indigo-Farbstoffe , 1963 .
[29] F. Kröhnke. Neuere Methoden der präparativen organischen Chemie Synthesen mit Hilfe von Pyridinium‐Salzen , 1963 .
[30] S. J. Holt,et al. II. Synthesis of indigogenic substrates for esterases , 1958, Proceedings of the Royal Society of London. Series B - Biological Sciences.
[31] P. Sadler. Absorption Spectra of Indigoid Dyes , 1956 .
[32] P. Sadler. Separation of Isomeric Isatins , 1956 .
[33] W. Brode,et al. The Relation between the Absorption Spectra and the Chemical Constitution of Dyes. XXVII. cis-trans Isomerism and Hydrogen Bonding in Indigo Dyes1 , 1954 .
[34] J. Formánek. Über den Einfluß verschiedener Substituenten auf Farbe und Absorptionsspektrum des Indigo, Thioindigo und Indirubin , 1928 .
[35] T. Posner. Beiträge zur Kenntnis der Indigo‐Gruppe, VI.: Über die Einwirkung von Säurechloriden auf Indigo und Indigo‐Derivate, sowie über die Raumformel des Indigos , 1926 .
[36] P. Friedländer. Über die Farbstoffe aus Purpura aperta und Purpura lapillus , 1922 .
[37] E. Grandmougin,et al. Über Indigo. V: Über halogenierte Indigo und Derivate , 1914 .
[38] P. Friedlaender,et al. Über 6.6′-Dibrom-indirubin , 1912 .
[39] F. Sachs,et al. Ueber p‐substituirte o‐Nitrobenzaldehyde , 1904 .
[40] F. Sachs,et al. Ueber p-Halogen-o-Nitrobenzaldehyde , 1903 .
[41] A. Baeyer,et al. Darstellung von Indigblau aus Orthonitrobenzaldehyd , 1882 .
[42] T. Zimmermann,et al. Farben aus dem Meer: Der Purpur , 2001 .
[43] W. Prummel. Animals and Man in the Past , 2001 .
[44] C. Cooksey,et al. Monobromoindigos: a new general synthesis, the characterization of all four isomers and an investigation into the purple colour of 6,6′-dibromoindigo , 1999 .
[45] Z. Koren. High‐Performance Liquid Chromatographic Analysis of an Ancient Tyrian Purple Dyeing Vat from Israel , 1995 .
[46] G. Artioli,et al. Palygorskite From Bolca, Italy - A Characterization By High-resolution Synchrotron-radiation Powder Diffraction and Computer Modeling , 1994 .
[47] Kozo Matsumoto,et al. A convenient and rapid detection method of Kaimurasaki coloring matter by MS. , 1994 .
[48] A. Verhecken. Experiments with the dyes from European purple-producing shellfish , 1994 .
[49] C. H. Eugster. HANDBUCH DER NATURFARBSTOFFE , 1994 .
[50] H. Schweppe. Handbuch der Naturfarbstoffe : Vorkommen, Verwendung, Nachweis , 1993 .
[51] C. Cooksey,et al. Indigo, woad, and Tyrian Purple: important vat dyes from antiquity to the present , 1993 .
[52] R. N. Schindler,et al. An Optical and Spectroelectrochemical Investigation of Indigo Carmine , 1991 .
[53] P. Süsse,et al. Indigo: Crystal structure refinement based on synchrotron data , 1988 .
[54] R. H. Michel,et al. The chemical processing of Royal Purple dye: ancient descriptions as elucidated by modern science , 1987 .
[55] S. Larsen,et al. The Crystal and Molecular Structures of Tyrian Purple (6,6'-Dibromoindigotin) and 2,2'-Dimethoxyindigotin. , 1980 .
[56] O. Buchardt,et al. A revised structure of tyriverdin: The precursor of tyrian purple , 1978 .
[57] A. D. Ulloa,et al. Relación histórica del viaje a la América meridional , 1978 .
[58] J. T. Baker. Tyrian purpie: an ancient dye, a modern problem , 1974 .
[59] C. Duke,et al. Chemistry of the indoleninones. II. Isolation from the hypobranchial glands of marine molluscs of 6-Bromo-2,2-dimethylthioindolin-3-one and 6-\Bromo-2-methylthioindoleninone as alternative precursors to Tyrian purple , 1973 .
[60] Émilienne Demougeot. Meyer Reinhold, History of Purple as a Status Symbol in Antiquity (coll. « Latomus », vol. 116), 1970 , 1972 .
[61] M. Reinhold. History of purple as a status symbol in antiquity , 1970 .
[62] M. D. Sutherland,et al. Pigments of Marine animals VIII Precursors of 66 tp-dibromoindigotin (Tyrian purple) from the molluse Dicathais orbita Gmelin , 1968 .
[63] M. D. Sutherland,et al. Pigments of marine animals , 1968 .
[64] C. E. Stickings,et al. 41. Phenanthrene-3 : 6-diamidine , 1945 .
[65] P. Friedländer,et al. Über Brom- und Methoxyderivate des Indigos , 1912 .
[66] P. Friedländer. Über den Farbstoff des antiken Purpurs aus murex brandaris , 1909 .
[67] E. Schunck. LII.—Notes on the purple of the ancients (continuation) , 1880 .
[68] E. Schunck. LXIV.—Notes on the purple of the ancients , 1879 .